About the Chemistry Ph.D. Program

Ph.d. in chemistry faq's.

Trevor Lohrey, Arnold Research Group

The Chemistry PhD program is designed towards developing within each student the ability to do creative scientific research. Accordingly, the single most important facet of the curriculum for an individual is their own research project. In keeping with the goal of fostering an atmosphere of scholarly, independent study, formal course requirements are minimal and vary among disciplines; advisor's tailor course requirements to best prepare the student for the chosen research field.

The Doctoral program includes the following concentrations, each of which has specific degree requirements:

  • Physical Chemistry : In general, the Physical Chemistry Graduate Program encompasses analytical, nuclear, biophysical, and theoretical chemistry.
  • Synthetic Chemistry : The Synthetic Chemistry Graduate Program includes emphases in either organic or inorganic chemistry
  • Chemical Biology : The Chemical Biology Graduate Program covers a range of research areas at the interface of Chemistry and Biology.

Research. A graduate student spends a good deal of time during the first week of the first semester at Berkeley talking to various faculty members about possible research projects, studying pertinent literature references, and choosing an individual project. New graduate students meet shortly after their arrival with a faculty adviser. From the faculty adviser the student obtains a list of faculty members whose research may interest the student. After visiting these and additional faculty, if necessary, the student chooses a research director, with the consent of the faculty member and the graduate adviser. By the end of the first semester most students have made a choice and are full-fledged members of research group. Students in the Chemical Biology Graduate Program will select their thesis advisor after completion of three-ten week rotations. Thereafter, all students become involved in library research on their projects and many begin actual experimental or theoretical work.

Independent Study. A student who chooses to specialize in physical chemistry is normally expected to take two courses per semester during the first year and one or two additional semesters of coursework sometimes during the second year. These may include topics such Quantum Mechanics, Statistical Mechanics, Group Theory, Interactions of Radiation with Matter, and many more. At the other extreme, a student specializing in inorganic chemistry will concentrate more heavily on special topics seminars and take fewer courses. The course offerings in the University are varied so that individual students have the opportunity to take other courses which serve their own needs. Such as, a student working on nuclear chemistry will probably elect additional graduate physics courses, while a student working on biophysical or bio-organic problems may take courses offered by the Biochemistry Department. Students in the Chemical Biology program will take courses from both Chemistry and Molecular and Cell Biology departments.

Seminars. Because of the size and diversity of the Berkeley faculty, there are many seminars on a variety of topics which students may choose to attend. There are regular weekly seminars in several major areas, including biophysical, physical, nuclear, organic, theoretical, solid state, and inorganic chemistry. These seminars are presented by members of the Berkeley faculty, as well as distinguished visitors to the campus. These seminars allow the students to become aware of the most important current research going on in the field. In addition to these regular seminars, there are several regular department seminars devoted to presentations by graduate students. One of the doctoral program requirements is that each student delivers a departmental seminar known as a graduate research conference during the second year. Individual research groups also hold regular research seminars. The format of these small, informal seminars varies. In some cases, graduate students discuss their own current research before the other members of the research group. On other occasions, the group seminars may be devoted to group discussions of recent papers which are of interest to the particular research group. In any event, small group seminars are one of the most important ways in which students learn by organizing and interpreting their own results before their peers.

Qualifying Exam. Sometime during the second year of graduate work at Berkeley, each student takes a qualifying examination. The examining board, a committee of four faculty members, is appointed to examine the student for general competence in the area of interest. The qualifying examination is centered around the defense of the individual research project. Upon satisfactory completion of the oral qualifying examination, the student is advanced to candidacy for the Ph.D. degree. After advancement, the student completes an original, scholarly contribution to science and writes a dissertation on the subject. Most students complete their work and received their degree within five years.

Teaching. An integral part of the graduate education at Berkeley is teaching. The department requires that each doctoral candidate assist in the instructional program of the department as a teaching assistant for two semesters during their graduate careers. The faculty regard the teaching experience as highly valuable for all graduate students, especially those who plan to teach as a career.

Financial Aid. All students admitted to our graduate program receive a stipend for the duration of study in the form of teaching and research assistantships as long as they are in residence and demonstrate good progress toward the degree. Students also receive full tution, health, dental and vision insurance. Most funds for this support derive from research contracts and grants.

For more information see the Berkeley Bulletin

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PhD in Chemistry

The PhD in chemistry is primarily a research degree. It is awarded to students who have displayed competence in planning and conducting original research in the field of chemistry, demonstrated a broad familiarity with the science of chemistry, understanding in the application of the scientific method, and gained a thorough knowledge of their field of specialization.

Students build a solid foundation in all four core areas of chemistry (analytical, inorganic, organic, and physical), and a thorough knowledge of their chosen field of specialization. In the first part of the PhD program, students take at least one formal classroom course in each the core areas of chemistry as outlined in the course requirements below. The courses must be completed successfully (B- or better) by the end of the third semester.

Since original research is the primary requirement for the PhD degree, a student selects a research supervisor and begins research before the end the first year. The student and research supervisor then select two faculty members to serve as the student's Doctoral Research Committee. The Committee, in conjunction with the student's research adviser, take over the advisory function from the graduate committee and guides the student's work to promote development as an independent investigator.

Thus, in addition to research each student must complete the following requirements:

  • Service as a teaching assistant
  • Regular progress updates with a faculty Research Committee
  • A departmental seminar
  • Defense of an original research proposal.
  • Completion of a dissertation reporting significant work of publishable quality

Course Requirements

At least one of the following analytical chemistry courses:

  • Chem 141: Instrumental Analysis
  • Chem 142: Advanced Analytical Methods
  • Chem 144: Spectroscopic Methods of Analysis
  • Chem 145: Separation Science
  • Chem 146: Electroanalytical Chemistry

At least one of the following inorganic chemistry courses: 

  • Chem 161: Advanced Inorganic Chemistry
  • Chem 162: Chemistry of Transition Elements
  • Chem 164: Bioinorganic Chemistry
  • Chem 165: Physical Methods In Inorganic Chemistry

At least one of the following organic chemistry courses:

  • Chem 150: Intermediate Organic Chemistry
  • Chem 151: Physical Organic Chemistry
  • Chem 152: Advanced Organic Synthesis

At least one of the following physical chemistry courses: 

  • Chem 131: Statistical Thermodynamics
  • Chem 132: Chemical Kinetics and Dynamics
  • Chem 133: Quantum Mechanics
  • Chem 134: Biophysical Chemistry
  • Chem 136: Spectroscopy and Molecular Structure
  • Chem 138: Atomic Scale Structure and Properties of Surfaces  
  • Two additional classroom courses, exclusive of research, must be completed satisfactorily by the end of the fourth semester
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Chemistry PhD Program

The University of Pennsylvania is an internationally renowned research institution that attracts the best students from the United States and around the globe. The Graduate Program is designed for students who wish to earn a Ph.D. in Chemistry while undertaking cutting edge research. The program provides students with the necessary theoretical background and hands-on training to become independent and highly successful scientists.  Graduate students achieve mastery of advanced chemistry topics through courses in different subdisciplines. Broad exposure to current research also occurs via four weekly departmental seminar programs and many interdisciplinary, university-wide lecture series.

Currently, faculty, students, and postdoctoral associates in Chemistry work in the fields of bioinorganic chemistry, bioorganic chemistry, chemical biology, biophysical chemistry, bioinformatics, materials science, laser chemistry, health related chemistry, structural and dynamical studies of biological systems, X-ray scattering/diffraction, NMR spectroscopy, applications of computing and computer graphics, as well as investigations of chemical communication and hormone-receptor interactions. Many research groups combine different techniques to explore frontier areas, such as nanomaterials applied to biology, photoactive biomolecules, and single-molecule imaging. Novel synthetic procedures are under constant development for targets ranging from super-emissive nanoparticles to highly specialized drug molecules and giant dendrimers, which are being explored, for example, as drug-delivery systems. The Research Facilities in the Department of Chemistry provide a strong technology base to enable the highest level of innovation. Graduate students are a driving, integral force at Penn Chemistry.

PhD Program

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Professor Wender discusses chemistry with his graduate students.

Doctoral study in chemistry at Stanford University prepares students for research and teaching careers with diverse emphases in basic, life, medical, physical, energy, materials, and environmental sciences.

The Department of Chemistry offers opportunities for graduate study spanning contemporary subfields, including theoretical, organic, inorganic, physical, biophysical and biomedical chemistry and more. Much of the research defies easy classification along traditional divisions; cross-disciplinary collaborations with Stanford's many vibrant research departments and institutes is among factors distinguishing this world-class graduate program.

The Department of Chemistry is committed to providing academic advising in support of graduate student scholarly and professional development.  This advising relationship entails collaborative and sustained engagement with mutual respect by both the adviser and advisee.

  • The adviser is expected to meet at least monthly with the graduate student to discuss on-going research.
  • There should be a yearly independent development plan (IDP) meeting between the graduate student and adviser. Topics include research progress, expectations for completion of PhD, areas for both the student and adviser to improve in their joint research effort.
  • A research adviser should provide timely feedback on manuscripts and thesis chapters.
  • Graduate students are active contributors to the advising relationship, proactively seeking academic and professional guidance and taking responsibility for informing themselves of policies and degree requirements for their graduate program.
  • If there is a significant issue concerning the graduate student’s progress in research, the adviser must communicate this to the student and to the Graduate Studies Committee in writing.  This feedback should include the issues, what needs to be done to overcome these issues and by when.

Academic advising by Stanford faculty is a critical component of all graduate students' education and additional resources can be found in the  Policies and Best Practices for Advising Relationships at Stanford  and the  Guidelines for Faculty-Student Advising at Stanford .

Learn more about the program through the links below, and by exploring the research interests of the  Chemistry Faculty  and  Courtesy Faculty .

Chemistry, PhD

Zanvyl krieger school of arts and sciences.

Johns Hopkins University was the first American institution to emphasize graduate education and to establish a PhD program in chemistry. Founding Chair Ira Remsen initiated a tradition of excellence in research and education that has continued until this day. The Hopkins graduate program is designed for students who desire a PhD in chemistry while advancing scientific knowledge for humankind.

The graduate program provides students with the background and technical expertise required to be leaders in their field and to pursue independent research.

Graduate students’ advancement is marked by entrance exams, coursework, teaching, seminars, oral examinations, and an individual research project that culminates in a thesis dissertation. The thesis research project represents an opportunity for graduate students to make a mark on the world. Working in conjunction with a faculty member or team, individually tailored thesis projects enable students to think independently about cutting-edge research areas that are of critical importance. Thesis research is the most important step toward becoming a PhD scientist, and our program provides an outstanding base with a proven track record of success.

Graduate students make up the heart of the Chemistry Department, and the department strives to support students’ individual needs. Each student is carefully advised and classes are traditionally quite small. Multidisciplinary research and course offerings that increase scientific breadth and innovation are hallmarks of the program.  In addition to academic and technical development, our department also offers several outlets for professional and social development.

Admission Requirements

Application materials include:

  • Academic transcripts
  • Three letters of recommendation
  • Statement of Purpose
  • The GRE General Test is required.  However, this requirement can be waived for individuals for whom personal circumstances make it difficult or impossible to access the GRE General Test at this present time.  If so, please let the Academic Affairs Administrator (information below) be aware of these circumstances, and the application will be given full consideration.
  • The GRE Chemistry Subject is Test is recommended, but not required.
  • The application fee is $75. However, fee waivers may be requested for applicants that have documentation showing they are a part of SACNAS, MARCC, oSTEM and many other organizations. To access the full list to see if you qualify, go to the  Krieger Graduate Admission and Enrollment  page.

Assistance with the application process is available. Candidates with questions about the application process, or requests for a GRE General Test waiver (or on other matters related to the application) should contact the Admissions Committee’s Academic Affairs Administrator ( [email protected] ).

There are no fixed requirements for admission. Undergraduate majors in chemistry, biology, earth sciences, mathematics, or physics may apply as well as all well-qualified individuals who will have received a BA degree before matriculation. A select number of applicants will be invited to visit campus to tour our facilities and interact with our faculty members and their lab members over a weekend in March.

For further information about graduate study in chemistry visit the Chemistry Department website . 

Program Requirements

Normally, the minimum course requirement for both the M.A. and the Ph.D. degrees is six one-semester graduate courses in chemistry and related sciences. Exceptionally well-prepared students may ask for a reduction of these requirements.

Requirements for the Ph.D. degree include a research dissertation worthy of publication, and a knowledge of chemistry and related material as demonstrated in an oral examination. Each student must teach for at least one year.

Below is a list of the core Chemistry courses for graduate level students.

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The Department of Chemistry at Case Western Reserve University strives to provide a world-class program of research and coursework for pursuit of graduate degrees in Chemistry. The PhD program is designed to equip students with a strong foundation for a career in chemistry, areas allied with chemistry, and chemical management. To accomplish this mission the Department offers courses, colloquia, and, most importantly, research programs guided by a faculty mentor in the fields of organic, biological, analytical, physical, and inorganic chemistry. Mentorship of PhD students during their maturation from apprentice to independent researcher is a major responsibility of faculty. During their training, students acquire technical proficiency in a focused area of expertise as well as a broad base of problem-solving skills and exposure to interdisciplinary science. This prepares them to enter the job market with the flexibility demanded by industry and academia. Another role of faculty is to convey to graduate students the proper ethics of scientific conduct. Furthermore, chemistry research is very equipment and instrument intensive, and often involves use of hazardous materials. Safety training thus receives careful attention and monitoring in our experimental programs.

PhD research at CWRU has two main foci: chemical biology and energy and materials. Chemical biology broadly defined includes programs in biochemistry, structural biology, biophysical chemistry, medicinal chemistry, the chemical basis of disease, and genetically-derived natural products. Energy and materials includes programs in photochemistry, ultrafast spectroscopy, theoretical and experimental electrochemistry, energy storage, solar energy, nanomaterials, and small molecule and polymer synthesis.

Admission Standards

A bachelor’s degree in chemistry, biochemistry, or related field is required for admission to the PhD program, with a GPA of 3.0/4.0 or class ranking in the upper third. Completed applications include transcripts of the student’s total record in higher education and at least three letters of recommendation from science teachers or supervisors. The Graduate Record Examination (GRE) is not required for admission into our program.

International applicants must also submit proof of English language proficiency. The TOEFL, IELTS, and PTE-Academic tests are approved by the School of Graduate Studies. Duolingo is not accepted.

Minimum scores:

  • Test of English as a Foreign Language (TOEFL) : 90
  • International English Language Testing System (IELTS) : 7.0
  • Pearson Test of English (PTE-Academic) : 61

The language test requirement can be waived if you have completed a bachelors or masters degree from an institution where English is the primary language of instruction. Please contact [email protected] for more details.

Apply for your PhD in Chemistry now!

Application requirements can be found on our graduate programs admission page .

Program Details

Course work.

Students choose a curriculum of course work from among a large array of offerings in chemistry and related science departments. There is a six-course requirement, which can be satisfied completely during the student’s first year if desired, and includes a one-course requirement in each of the three major chemistry disciplines (organic, inorganic, and physical). Placement examinations in each of these three areas are given to all entering students in order to assess undergraduate competency and help the department advise the student as to the most prudent selection of first-year work.

All PhD students participate in the departmental teaching program, an important component of the student’s professional training. The two semester requirement as teaching assistant is usually satisfied during the first year.

Research Advisors

Graduate students become affiliated with a research advisor normally at the end of their first semester. An orientation program helps students select their advisors by acquainting them with the department faculty and their current and projected research activities. Students will then participate in lab rotations in at least two selected research groups indicated by the student. Every effort is made to match students with their first choice for advisor, although balance among research groups and funding circumstances are also taken into account. The research advisor becomes the student’s principal mentor regarding course selection, preparation for examinations, conduct of research, composition of the thesis, and professional placement. The student’s major activity toward the PhD degree is his or her original research under the supervision of the research advisor, culminating in the presentation and defense of the doctoral dissertation (thesis).

Thesis Committees

The progress of each PhD student toward the fulfillment of degree requirements is followed by a review committee, as well as by the student’s research advisor. A review committee of three faculty members is first appointed, in consultation with the research advisor, to conduct the oral examination leading to candidacy. The research advisor is not a member of this committee but is normally present at the oral examination. The review committee maintains informal contact with the student during the course of the thesis research in order to help the student ensure that satisfactory progress is being made. Upon successful completion of the thesis and other graduate requirements, the student presents and defends the thesis research before a final examination committee made up of the review committee plus the research advisor and a faculty member from outside the Department of Chemistry.

Other Academic Activities

Students in their first and second year are required to enroll in CHEM 605: Colloquium. Students attend our department seminar series to be exposed to a variety of specialties and projects in the field of Chemistry.

Financial Support

The Department of Chemistry financially supports PhD students through a combination of teaching and research assistantships at a competitive stipend level. This support continues on an annual basis, provided the student makes satisfactory progress toward the PhD degree. Financial support includes a full tuition waiver, health insurance coverage, and a stipend for living expenses.

Research fellowships are funded by research grants and contracts awarded to faculty. PhD students are encouraged to apply for additional fellowships.

Ohio Board of Regents Review Information

Date of last program review: Spring 2013 Date of next scheduled program review: Spring 2021 Date program goals and objectives were revised: Fall 2013

The manner in which the program addresses the needs of the state or region

Educational institutions and the biotechnology, polymer, and energy-related industries are major employers in Ohio and the Cleveland area. The PhD program in chemistry provides graduates with a solid, broadly based education which enables them to teach in the >130 institutions of higher education in the state of Ohio. Research in the department covers a wide range of chemical fields, such as biomedical research, chemical biology, energy research, chemical synthesis, spectroscopy, catalysis, and electrochemistry. Graduates trained in these areas are prepared for employment in many existing and emerging fields, such as the health and energy industries.

Placement Objectives for Graduates

The doctoral program in chemistry prepares students for faculty and research positions at colleges and universities and for employment in the biotechnology, pharmaceutical, polymer, and energy-related industries. Among recent graduates, about 11% have tenure-track faculty positions, 26% have postdoctoral research positions, and 36% work in industry.

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PhD Program Requirements

The Chemistry Department offers a flexible program that allows students to select courses tailored to their individual background and research interests. Students also teach for two semesters.

As part of the requirement for a PhD degree, MIT requires a General Examination, with both an oral and written part. The Oral Examination for the PhD in Chemistry must be passed by the end of the fourth semester of graduate study. No other general written examinations are required. In particular, no qualifying (or entrance) examinations are given.

A final oral presentation of doctoral research is scheduled after the thesis has been submitted and evaluated by a committee of faculty.

Program Requirements

Coursework and teaching.

All chemistry graduate students are required to register for the appropriate chemistry seminar subject (5.913, 5.921, 5.931, or 5.941 depending on research area) each term. This registration carries with it the expectation of seminar attendance whenever possible. These seminars provide an important component to your graduate education and professional development

All students are required to teach for two semesters in their first year. During those semesters, students are required to enroll in a class to support their teaching (5.91 Teaching Experience in the Chemical Sciences).  

2nd Year Oral & Written Exams

MIT requires that all Ph.D. candidates pass general oral and written examinations in their field of study. For chemistry students, these exams occur in the spring of the second year. The faculty committee will (i) assess whether the student has progressed sufficiently to be on-track for obtaining a Ph.D. degree in Chemistry and (ii) provide constructive feedback to help the student reach their full potential during the period of study at MIT. Thus, the overarching purpose of the examination includes fulfilling Institutional requirements for Ph.D. students and evaluating:

1. Progress towards the PhD degree (coursework, research) indicating that the student is on track to receive a doctoral degree in Chemistry 2. General knowledge and understanding in the broad field of study and specific sub-area 3. Critical thinking, including the ability to use core principles to think through unfamiliar topics 4. Ability to communicate effectively in oral and written forms, think logically and independently, and defend a point of view 5. Ability to formulate upcoming research plans and present a feasible timeline for progress towards completion of research goals 6. Overall scholarship

Thesis Committees

As the first step, second-year students meet with their research advisors to discuss which faculty might be appropriate as members of their Thesis Committee.  Thesis Committees must be composed of at least two other MIT faculty besides your advisor. Your Thesis Committee chair must be from the department of chemistry and in your area of chemistry (chemical biology, inorganic, organic, or physical). Please see the notes below if you are working in a research group outside the department and/or are co-advised. You are required to propose at least four faculty members as candidates for your committee in addition to your advisor, though you may propose up to six faculty members.  Students should fill out the online Thesis Committee Nomination Form by Friday, September 15, 2023 . Submitted forms are then reviewed by the Graduate Officer and a faculty advisory group who assign final Thesis Committees.  They will also choose one of these faculty members to be your Thesis Committee Chair.  This process is necessary to avoid the past problem of some faculty being assigned to an inordinately large number of committees. If you are listing any faculty outside the department, please contact them before submitting your form to confirm that they are willing to serve on your Thesis Committee and attend all relevant examinations and meetings. You do not need to reach out to any faculty within the department about serving on your thesis committee.

Students wishing subsequently to change their Thesis Committee, for reasons including significant changes in the direction of their research topic, should email Jennifer Weisman with the reason for requesting a change. Students must receive a positive response from the Chemistry Education Office in order for the change in committee to take effect.  Since changes in Thesis Committee membership can only be granted in unusual circumstances, students should contact the members of their committee to schedule the date for their oral defense well in advance of when they expect to complete their dissertation.

In the second year, each student’s research progress and intellectual development is evaluated through the Oral Examination. If a division requires an examination after the second year, Thesis Committee members also meet then. The thesis committee also meets for the Plan to Finish Meeting described below. Students (and research advisors) may arrange an additional meeting of the Thesis Committee in special circumstances by contacting the chair of the committee. Additionally, beginning in the second year of graduate study, each student meets with the Chair of their Thesis Committee at least once during the fall semester.

*Please note that if you are conducting research outside the department your Thesis Committee must be composed of at least two other MIT faculty besides your advisor and both must be from the Department of Chemistry. As noted above, your Thesis Committee chair must be in your area of chemistry (chemical biology, inorganic, organic, or physical).

Annual Meeting with Research Advisor

Under this system, research advisors are required to meet with each graduate student in their group who is in their second or later year to discuss the student’s intellectual and professional development over the past year and progress toward the degree. Prior to this meeting, students should complete Parts I-II of the required form on their own. Send the file to your Advisor the night before the meeting . At the meeting, students discuss their progress, future plans, and concerns with their advisor. The completed Graduate Student Annual Research Advisor Meeting form must be signed by both the student and their research advisor. Note that this is only a suggested format for the meeting. You and your advisor may choose a different format for the discussion as long as there is some written summary.

Annual Meeting with Thesis Committee Chair

Beginning in the second year of graduate student, each student meets annually with the Chair of their Thesis Committee. At these meetings, students update the Thesis Committee (TC) Chair on their on their research progress and general intellectual development in an informal and relaxed setting. The time, place, and format for this discussion is arranged between the student and Thesis Committee Chair. These meetings aim to encourage productive and stimulating discussions of science and to facilitate the development of further interactions between students and other members of the faculty besides research advisors. Students should keep in mind that these meetings are intended to focus primarily on academic and scientific matters, and that Thesis Committee Chairs are not bound by the same obligations with respect to privacy as are the Chemistry Department Mediators.

Plan to Finish Meeting

Updated October 2022

By June 1 st (and preferably before April 15 th ) of the 4 th year , each PhD student will participate in the Plan to Finish (PTF) meeting with their thesis committee. The purpose of the PTF meeting is for the student to discuss their timeline and plans for finishing a PhD.

In the 5 th year and beyond, if the student is not defending the PhD thesis by August 31 st of the 5 th year, the student will have another PTF meeting before June 1 st (and preferably before April 15 th ) of that calendar year, and the PTF meeting will be repeated annually until the year the student defends their thesis. Thus, a student who graduates in year five will have one PTF meeting, one who graduates in year six will have two, and so forth.

Before the meeting:  The student will prepare and share slides containing a summary of their research progress and their plans for research and completing the PhD thesis.

  • Projects that will be wrapped up and/or relinquished
  • Papers that will be written and/or submitted
  • Opportunities for professional development
  • Plans for after graduation
  • The presentation should be succinct, not more than 8–10 slides total. These slides should include: (1) 1–2 introductory slides, one of which must display a proposed table of contents for the PhD thesis. The TOC includes the title for each proposed chapter and state of each chapter (e.g. “Experiments complete and manuscript published”, “Experiments nearly completed and manuscript writing in progress”, “Experiments ongoing”). (2) 1–3 slides per thesis chapter and associated future work linked to each chapter. (3) 1 slide summarizing future plans with a realistic timeline for completion of all the proposed activities (the PTF timeline).  Be sure to include the status of plans for after graduation. The student should consult with their research advisor in preparing the PTF timeline.
  • The slides must be sent to the committee at least 48 hours in advance of the meeting.
  • Meetings will be scheduled at the student’s direction and be organized by the research supervisor’s administrative assistant. These meetings are intended to be in-person, but teleconference can be used in special circumstances.

During the meeting: The meeting will follow the format below.

First, the student will provide a short (10-20 minute) presentation of their research progress and future plans based on their slides. Faculty will participate in discussion of the research and plans during this presentation.

Next, the research supervisor will be asked to leave the room so that the thesis committee can confer privately with the student.

Subsequently, the student will be asked to leave the room for a short period so that the committee can confer privately with the research supervisor.

The thesis committee will offer constructive feedback during and after the presentation and following the private discussions. The committee may request changes and/or revisions to the PTF outline as part of the discussion.

The plan to finish meeting will last ~1 hour altogether.

After the meeting:  The student will write-up a brief summary of the meeting, and submit it along with the PTF timeline and a signed PTF Form to the Chemistry Education Office as proof of completion. These items can be submitted as hard copies to the Chemistry Education Office or emailed to Dr. Jennifer Weisman .

  • While the deadline to hold the PTF meeting is June 1 st , students are strongly encouraged to complete their PTF Meeting by April 15 th to avoid scheduling issues later in the spring. As a reminder, the research supervisor’s administrative assistant will schedule the meeting upon the student’s request.
  • There is no possibility of failing the PTF meeting. The purpose of the meeting is fulfilled by the process of having it.
  • Annual meetings with the research advisor are required every year, including the fourth year.

Graduate Student Exit Interviews

  • Graduating students will be sent a list of interview questions by the Chemistry Education Office when the student joins the degree list. Instructions about scheduling a time for the in-person or virtual discussion will be included with other informational correspondence from the Chemistry Education Office regarding degree completion. Graduating students will perform their exit interview after the thesis defense so as to avoid making the interview an additional burden.
  • For students departing the program without a degree, the interview questions and instructions for scheduling an in-person discussion will be sent by the Chemistry Education Office at the point in time that a date for termination of their appointment in Chemistry is determined.
  • For the majority of departing students, this interview coincides with the end of the semester, but a rolling schedule of surveys is anticipated.

Guide for Graduate Students

For md-phd students in the hst program.

Graduate Programs

Chemistry phd.

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The goal of the Chemistry PhD is to prepare students for careers in science as researchers and educators by expanding their knowledge of chemistry while developing their ability for critical analysis, creativity, and independent study. A high graduation rate in an average of just over five years can be attributed to the quality of applicants admitted, the flexibility of our program of study, the opportunity for students to begin research in the first year, and the affordability of education made possible by our generous financial support policies.

Program Overview

Programs of study are tailored to the needs of individual students, based on their prior training and research interests. However, progress to a degree is generally similar for all students. During the first year, students take courses, begin their teaching apprenticeships, choose research advisors, and embark on their thesis research; students whose native language is not English must pass an English proficiency examination. Beginning the first summer, the emphasis is on research, although courses of special interest may be taken throughout a student's residency. In the second year, there is a departmental examination which includes a written research proposal and an oral defense of the research proposal. In the third year, students advance to candidacy for the doctorate by defending the topic, preliminary findings, and future research plans for their dissertation. Subsequent years focus on thesis research and writing the dissertation. Most students graduate during their fifth year.

Research Opportunities

Research opportunities for graduate students are comprehensive and interdisciplinary, spanning inorganic, organic, physical, analytical, computational, and theoretical chemistry; surface and materials chemistry; and atmospheric and environmental chemistry. Please refer to the faculty pages for full descriptions of the ongoing research in our department. State-of-the-art facilities and laboratories support these research programs.

At UCSD, chemists and biochemists are part of a thriving community that stretches across campus and out into research institutions throughout the La Jolla and San Diego area, uniting researchers in substantive interactions and collaborations.

Special Training Programs

Interdisciplinary research and collaboration at UCSD is enhanced through a variety of training grants. These programs provide financial support for exceptional graduate and postdoctoral scholars and also unite researchers from across campus and throughout the La Jolla research community in special seminars, retreats, and courses. Doctoral students are usually placed on training grants in their second year or later.

  • Molecular Biophysics Training Grant
  • Contemporary Approaches to Cancer Cell Signaling and CommunicationBiochemistry of Growth Regulation and Oncogenesis
  • Chemistry Biology Interfaces Training Grant
  • Contemporary Approaches to Cancer Cell Signaling and Communication
  • Interfaces Graduate Training Program
  • Molecular Pharmacology Training Program
  • UC San Diego MRSEC
  • Quantitative Biology (qBio) Specialization

Teaching apprenticeships are a vital and integral part of graduate student training, and four quarters of teaching are required. See the Teaching Assistants page to apply. Students can gain experience teaching both discussion and laboratory sections. Excellence in teaching is stressed, and the department provides a thorough training program covering both fundamentals and special techniques for effective instruction. Further training is provided by the Teaching and Learning Commons on campus. Performance is evaluated every quarter, and awards are bestowed quarterly for outstanding teaching performance.

  • Financial Support

Students in good academic standing receive a 12-month stipend; fees and tuition are also provided. Support packages come from a variety of sources, including teaching and research assistantships, training grants, fellowships, and awards. Special fellowships are awarded to outstanding students based on their admission files. See Ph.D. Program Support Policy for more information.

Health and Dental Plan

A primary health care program, major medical plan, and dental plan are among the benefits provided by the University's registration fee (see Graduate Student Health Insurance Program, GSHIP) . Minor illnesses and injuries can usually be treated at the Student Health Center . Counseling is provided free of charge through Counseling and Psychological Services .

Creative, bright, and motivated students from diverse backgrounds are encouraged to apply. We admit for the Fall quarter entrance only. See UCSD Ph.D. Admissions FAQ page for full information.

PostGraduate Placement

Graduates typically obtain jobs in academia or in the chemical industry. Many take postdoctoral research positions in academic institutions and national laboratories that lead to future academic or industrial careers at other prestigious institutions. Our faculty and Student Affairs staff provide career advising and job placement services. The department's Industrial Relations program assists students with placement in industrial positions. UCSD's Career Services Center provides many resources for students, including the chance to videotape yourself in a mock interview!

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phd chemistry full form

  • Doing a PhD in Chemistry

A PhD in Chemistry aims to prepare highly qualified researchers who are able to bring about new advances in the chemistry fields, including Chemical Engineering, Materials Science and Nanoscience etc. In other words, the core objective of a Chemistry PhD is to train researchers to join or lead research groups in universities, independent R&D departments other public or private organisations to meet the growing demands of society.

Browse PhDs in Chemistry

In-situ disposal of cementitious wastes at uk nuclear sites, capturing vibration to drive chemical change, development of fluorescent organic molecules for application in super-resolution imaging techniques, atomic layer deposition of novel nanolayer materials for solar cells, coventry university postgraduate research studentships, what does a phd in chemistry involve.

As a research student, your daily activities will largely depend on two factors: what your specific research project is and what training objectives your department sets.

In short, your daily activities will focus on advancing your project, such as designing and conducting experiments, preparing your thesis and attending conferences etc., all while achieving your training objectives. Although training objectives vary from department to department, you can expect them to include outcomes such as:

  • Ability to independently devise, plan and carry out scientific research projects.
  • Acquire the skills to integrate effectively into any R&D team in the chemical sciences and technologies fields.
  • The ability to advise public and private institutions from a scientific and technical perspective.
  • To contribute to the development of knowledge, the latest techniques and instrumentation in relation to your specific field of specialisation.
  • Ability to update their scientific and technical expertise autonomously and continuously.

Since almost all doctoral degrees in chemistry are highly laboratory-based, your research will likely see you using advanced and innovative equipment. Depending on your research topic and your universities facilities, you may have to opportunity to use, for example, a Nuclear Magnetic Resonance Spectrometer (NMR), Electron Spin Resonance Spectrometer (EPR), Infrared-Raman Fourier Spectrophotometer (FT-IR), Atomic Force Microscope (AFM) and Inductively Coupled Plasma Spectrometer (ICP) as part of your research.

phd chemistry full form

Lines of Research

As with most STEM subject PhDs, the potential research themes encompassing Chemistry PhDs are numerous; a School of Chemistry may traditionally base their research around the areas of Physical and Theoretical, Organic and Biological and Materials and Inorganic Chemistry.

Academic staff at your particular institution will also have a broad range of research interests they want to pursue, and it’s common to find postgraduate research students involved in a range of projects that overlap with the other sciences.

The following list, whilst not exhaustive, should give you an idea of how many topics you could choose from as part of your doctorate:

  • Physical Chemistry,
  • Medicinal Chemistry,
  • Theoretical Chemistry,
  • Materials Chemistry,
  • Environmental Chemistry,
  • Structural Chemistry,
  • Biological Chemistry ,
  • Computational Chemistry,
  • Supramolecular Chemistry,
  • Organometallic Chemistry,
  • Atmospheric Chemistry.

phd in organic chemistry

Within these topics, there will be numerous specialist areas, one of which will form the central focus of your original research project. Examples of these specialist areas are:

  • Electrochemical Sensors and Biosensors,
  • Liquid chromatography and electrophoresis,
  • Basic and technological aspects of ceramic materials,
  • Organometallic chemistry and catalysis,
  • Asymmetric catalysis with metal complexes and organocatalysis,
  • Organic chemistry of metal compounds,
  • Synthesis of pharmacologically interesting compounds from chiral precursors,
  • Distereo- and enantioselective synthesis of biologically active natural products,
  • Photoactive molecules, macromolecules and nanoparticles.

How long does it take to get a PhD in Chemistry?

In the UK, a full-time doctoral student usually takes 3 years to complete their postgraduate study, while part-time study will usually take closer to 6 years.

Most Chemistry PhD students will first register as MPhil students , after which they will complete an upgrade viva after 18 months before they are officially registered as a PhD student. While your supervisor will provide mentorship, it’s ultimately the responsibility of postgraduate students to ensure their project and studies run on time and that they meet their agreed deadlines.

What are the typical entry requirements for a Chemistry PhD Programme?

Most UK universities require at least a 2:1 undergraduate masters degree or the equivalent grade from a university outside the UK. The degree must be in a field that is directly relevant or that can demonstrate your understanding of chemistry as a graduate student to the level expected of your prospective supervisor .

If English is not your first language, you will be expected to meet the English language requirements of the university where you applied to prove your proficiency. This usually means obtaining formal English language qualifications such as an IELTS, which, for research programmes, typically requires a minimum test score of 6.5 as part of your application.

How much does a Chemistry PhD cost?

As a postgraduate researcher in the UK, you should expect annual tuition fees of around £4,500 per academic year . Part-time students should expect approximately half this fee at £2,250 per academic year.

For international students, including now-EU students, the annual tuition fee is considerably higher; for example, the School of Chemistry at the University of Birmingham sets international fees at £23,580/year, equating to over £70,500 assuming your PhD project takes three years to complete.

As with every PhD degree, potential students will need to consider additional costs such as living costs and any bench fees that may be expected from their respective project or graduate school. It’s a good idea to discuss these with your potential supervisors before starting your postgraduate degree.

Funding opportunities

Several funding opportunities are available for a Chemistry PhD research project. The opportunities include:

  • Government funding eg. UKRI BBSRC , EPSRC, ESRC, GATEway for research degrees.
  • Industry funding eg. AstraZeneca, BP, NC3D, (UK) DSTL (USA), assuming the topic of your PhD study aligns with their research interests.
  • Independent funding eg. Grants or Specialist Institutes for research projects in Chemistry or other scientific fields supporting the PhD programme.
  • Research charities eg. Cancer Research, MacMillan.
  • University funding eg. Centre for Doctoral Training (CDT) funding in the form of scholarships/studentships which cover tuition fees and, in some cases, also provide a living allowance.

Thesis grants may also be available to assist with the costs of writing and presenting your thesis at an overseas conference or workshop. These can be awarded directly by institutions or even employers as part of a career development scheme.

What can you do with a PhD in Chemistry?

A PhD degree in Chemistry opens up a wide range of career opportunities, both within academia and industry.

Many graduates follow a career path of becoming postdoctoral researchers, then lecturers and possibly a professor of Chemistry too. Others may see their PhD projects linking with industry partners of the university, naturally leading to opportunities there. This may see graduates going on to work within the chemical engineering field, becoming materials scientists or working within environmental sciences.

With this in mind, the most common career paths after a PhD in Chemistry are:

  • University Lecturer A university lecturer may teach and run courses but may also advise on undergraduate study or research, supervise students, and be involved in developing education programs.
  • Post-Doctoral Research Fellowship Most chemistry PhDs go on to secure a post-doctoral position within an institution such as a university, governmental department, research charity or a Commercial Research Organisation (CRO).
  • Environmental Scientist An Environmental Scientist conducts research to assess and control the impact of human activity on the environment.
  • Patent Attorney A patent attorney is often employed by organisations that develop new technology. They are responsible for drafting the application for patents to protect a client’s intellectual property rights, focusing on chemical compounds, pharmaceuticals and biotechnology products.

chemistry phd programs and jobs

  • Cosmetic Chemist The Personal Care industry employs over 500,000 people in the UK alone and is an expanding market in the UK and global economy. The ingredients used in these products are often chemical compounds with large molecular structure, which is why they are typically developed by a chemist or chemist-biologist.
  • Process Engineer (Chemical Industry) A Process Engineer works on designing chemical processes and equipment to increase efficiency and profitability for an organisation. The role requires extensive knowledge of chemical engineering practices, operating conditions, instrumentation and mathematical techniques.

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Course closed:

Chemistry is no longer accepting new applications.

The PhD is offered by the Department of Chemistry as a full or part-time period of research and introduces students to research skills and specialist knowledge. 

Please note: part-time study may not always be viable and will be considered on a case-by-case basis, so please discuss this option with your proposed supervisor before making an application for this mode of study. There are attendance requirements and part-time students will need to live close enough to Cambridge to fulfil these.

Students are integrated into the research culture of the Department by joining a research group, supervised by one of our academic staff,  in one of the following areas of chemistry:

Biological Chemistry

Life is the chemistry that goes on inside every one of us. We seek to understand this chemistry, both the physical processes occurring at the molecular level and the chemical reactions, and we also seek to control the chemistry as a way to treat diseases. Biological Chemistry at Cambridge comprises several research groups with additional contributions from many more. The major themes are biological polymers, proteins and nucleic acids - how they interact with each other and with small molecules. How do proteins fold to a defined structure and why do they sometimes not fold properly but aggregate causing neurodegenerative diseases? How do proteins catalyse the reactions that they do and can we make small molecules that inhibit these processes? What structures can nucleic acids adopt? How can we detect and what is the role of modifications of individual nucleotides? How can we target medicinally active compounds to where they are needed in the body? By addressing these questions, we seek to improve human health and the treatment of diseases.

Materials Chemistry

The technological devices we depend on, from aeroplanes to mobile phones, rely upon ever-increasing structural complexity for their function. Designing complex materials for these devices through the art of chemical synthesis brings challenges and opportunities.

Members of the Materials RIG invent new materials in view of potential applications. Modern materials chemistry is a wide ranging topic and includes surfaces, interfaces, polymers, nanoparticles and nanoporous materials, self assembly, and biomaterials, with applications relevant to oil recovery and separation, catalysis, photovoltaics, fuel cells and batteries, crystallisation and pharmaceutical formulation, gas sorption, energy, functional materials, biocompatible materials, computer memory, and sensors. 

Physical and Atmospheric Chemistry

Physical Chemistry at Cambridge has two broad but overlapping aims. One is to understand the properties of molecular systems in terms of physical principles. This work underpins many developing technological applications that affect us all, such as nanotechnology, sensors and molecular medicine. The other is atmospheric chemistry where the interactions between chemical composition, climate and health are studied using a range of computer modelling and experiment-based approaches. Together these two areas form a richly interdisciplinary subject spanning the full range of scientific methodologies: experimental, theoretical and computational. It is a research area with something for everyone.

Synthetic Chemistry

Synthetic research at the University of Cambridge is focused on the development of innovative new methods to make and use molecules of function. Our interests range from the innovative catalytic strategies to make small molecules, to supramolecular assemblies or the total synthesis of biologically important compounds and natural products. Our research is diverse, pioneering and internationally leading. The dynamic environment created by the research groups working at the cutting edge of the field, makes postgraduate research at Cambridge the best place for outstanding and motivated students.

Theoretical Chemistry

Research in Theoretical Chemistry covers a wide range of lengths and timescales, including the active development of new theoretical and computational tools. The applications include high-resolution spectroscopy, atomic and molecular clusters, biophysics, surface science, and condensed matter, complementing experimental research in the Department.

We develop new tools for quantum and classical simulations, informatics, and investigate molecules using descriptions that range from atomic detail to coarse-grained models of mesoscopic matter. This work often begins with analytical theory, which is developed into new computer programs, applied to molecules and materials of contemporary interest, and ultimately compared with experiment.

Educational aims of the PhD programme:

  • give students with relevant experience at the master's level the opportunity to carry out focused research in the discipline under close supervision;
  • give students the opportunity to acquire or develop skills and expertise relevant to their research interests;
  • provide all students with relevant and useful researcher development training opportunities to broaden their horizons and properly equip them for the opportunity which they seek following their PhD studies.

Learning Outcomes

By the end of the programme, students will have

  • a comprehensive understanding of techniques, and a thorough knowledge of the literature, applicable to their own research;
  • demonstrated originality in the application of knowledge, together with a practical understanding of how research and enquiry are used to create and interpret knowledge in their field;
  • shown abilities in the critical evaluation of current research, research techniques and methodologies;
  • demonstrated some self-direction and originality in tackling and solving problems, and acted autonomously in the planning and implementation of research; and
  • taken up relevant and highly useful researcher development training opportunities to develop skills and attributes for their desired future career.

Students currently studying for a relevant Master's degree at the University of Cambridge will normally need to obtain a pass in order to be eligible to continue onto the PhD in Chemistry.

The Postgraduate Virtual Open Day usually takes place at the end of October. It’s a great opportunity to ask questions to admissions staff and academics, explore the Colleges virtually, and to find out more about courses, the application process and funding opportunities. Visit the  Postgraduate Open Day  page for more details.

See further the  Postgraduate Admissions Events  pages for other events relating to Postgraduate study, including study fairs, visits and international events.

The Department of Chemistry hosts a virtual open day for prospective postgraduate students comprising online laboratory tours, a chance to meet with current students and academic staff, and an opportunity to talk to professional services staff about the application process. 

Key Information

3-4 years full-time, 4-7 years part-time, study mode : research, doctor of philosophy, department of chemistry, course - related enquiries, application - related enquiries, course on department website, dates and deadlines:, lent 2024 (closed).

Some courses can close early. See the Deadlines page for guidance on when to apply.

Easter 2024 (Closed)

Michaelmas 2024 (closed), lent 2025 (closed), easter 2025 (closed), funding deadlines.

These deadlines apply to applications for courses starting in Michaelmas 2024, Lent 2025 and Easter 2025.

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This PhD program in Chemistry is designed for students who have earned a bachelor’s or a master’s degree in chemistry or a related field who wish to develop as independent researchers by engaging in cutting-edge research while working closely with faculty who are renowned in their fields.

The program of study includes some course work, but the primary emphasis is on the completion of an original research project, its articulation in a well-written thesis, and its subsequent defense before the thesis (oral examination) committee. The PhD program is a full-time degree program that typically takes five years to complete. Financial support (teaching assistantships or research assistantships) is normally provided for students throughout their period of study if they are found to be making satisfactory progress toward their degree in accordance with departmental and university guidelines.

  • Boston location ideally positioned in the heart of the Biotechnology Supercluster and Medical Hub
  • Students eligible for financial support in the form of Teaching Assistantships (TAs) or Research Assistantships (RAs)
  • Use-inspired research projects in materials, energy, and drug discovery are closely linked with industry via partnerships and collaboration
  • Departmental research funding is greater than $16 million, across multiple disciplinary foci
  • Home to the Barnett Institute of Biological and Chemical Analysis, a premier analytical chemistry institute, and the Northeastern University Center for Renewable Energy Technology
  • Bachelor’s and Advanced-degree entry are possible

Our graduates pursue careers within academia and beyond.

  • Paul scherrer Institute
  • Merck Research Laboratories
  • Bristol-Meyers Squibb
  • BioAnalytix
  • Lang Pharmaceutical Nutrition
  • Empiroko Inc.
  • Stanford University
  • Corden Pharmaceuticals
  • Warner-Babcock
  • Los Alamos National Laboratory

Application Materials

Application.

  • Application fee – US $100
  • Unofficial transcripts for all institutions attended (Official transcripts required upon acceptance of admission offer)
  • Personal statement
  • Three letters of recommendation
  • GRE General – recommended, but not required
  • Proof of English Proficiency for all applicants

Deadline for completed applications: December 1

  • Program Website

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Ph.D (Doctor of Philosophy) Chemistry Course, Eligibility, Colleges, Fees, Syllabus, Scope

PhD Chemistry or Doctor of Philosophy in Chemistry is a three to six-year doctoral degree. PhD Chemistry provides candidates with the opportunity for academic research study and it is completed when the candidates submit their thesis in the field of chemistry . PhD Chemistry is a favourable course for students who want to extensively research in the field of chemistry.

Latest: Top Ph.d Colleges in India

Don't Miss: UGC NET Previous Year Question Papers

PhD Chemistry Eligibility Criteria

Top phd chemistry entrance exam, phd chemistry subjects/syllabus, phd chemistry fees structure, phd chemistry scope, phd chemistry career options, phd chemistry expected salary, top phd chemistry colleges in india with fees.

Candidates to be eligible for PhD Chemistry should have a two-year master's degree in the related field after they finish a three-year bachelor's degree. Candidates who are interested in extensive research and study can opt for this course. The curriculum of PhD Chemistry includes subjects like Biochemistry , Bioinformatics , Nanoscience, Biotechnology , and Molecular biology.

After doing PhD Chemistry, candidates get to work in the field of research and science . Candidates are open to work as a Research Scientist, Academic Professor, Analytical Chemist, Process Development Engineer, and Government Scientist. Top recruiters for graduates of PhD Chemistry include Sun Pharmaceutical Industries, Lupin Limited, Reliance Industries Limited, TATA Chemicals, and DST.

PhD Chemistry Highlights

There is a specific eligibility criteria for candidates to apply for PhD Chemistry. To be eligible, candidates must have a postgraduate degree and a bachelor's degree in a related discipline. Also, candidates have to qualify for a certain entrance examination to be able to sit for counselling.

Candidates must have a master's degree of two years after completion of three years of bachelor's degree in the same discipline.

Candidates must qualify in one of the entrance exams like UGC NET, GATE, and other university-specific entrance exams.

They must also have some work experience in the desired field.

PhD Chemistry Admission Process

Candidates need to follow a simple admission procedure to get admission to PhD Chemistry. The admission process involves several steps like filling out the application form, taking the entrance exam, and sitting for counselling.

Candidates as the initial step should check their eligibility for the admissions in PhD Chemistry.

If eligible, candidates need to apply for the specific entrance exams and appear for them on the designated date and time.

If they qualify in the entrance exams, they get to fill out the forms for desired colleges as per their ranks.

After filling out the application form and submitting the documents, the universities and colleges roll out their merit list based on the ranks and applications received.

The shortlisted candidates have to sit for a personal interview.

After all the process is done, colleges send acceptance emails to the selected students.

There are several entrance exams available for candidates who want to secure a seat in PhD Chemistry. Candidates have to appear and qualify for one of the exams from UGC NET, GATE, and other college-specific entrance exams.

UGC NET : UGC NET or University Grants Commission National Eligibility Test is a national-level entrance exam conducted by the National Testing Agency (NTA). UGC NET is taken in a computer-based mode conducted annually.

UGC NET Application

UGC NET Eligibility

UGC NET Syllabus

UGC NET Exam Patterns

UGC NET Preparation Tips

GATE : GATE or Graduate Aptitude Test in Engineering is conducted by the Indian Institute of Science (IISc) and Indian Institutes of Technology (IITs) on a rotational basis. GATE is a national-level examination conducted in a computer-based mode.

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GATE Eligibility

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Skills Required for PhD Chemistry

PhD Chemistry is a field of research that provides candidates with various intellectual and interpersonal skills and knowledge in the field of chemistry. PhD Chemistry equips candidates with a combination of technical skills, research aptitude, and personal attributes.

Strong Foundation in Chemistry

Laboratory Skills

Critical Thinking and Problem-Solving

Data Analysis and Interpretation

Literature Review and Research Design

Communication Skills

Collaboration and Teamwork

Time Management and Organization

Adaptability and Resilience

PhD Chemistry provides candidates with comprehensive coursework throughout the course. The main aim of the coursework of PhD Chemistry is to help candidates create a thesis of their own. The following curriculum of Rajiv Gandhi University provides candidates with the necessary knowledge and skills to aid candidates in the whole process of thesis writing.

The fee structure for a PhD in Chemistry varies depending on the university, the location of the university, the facilities available, and the faculty. PhD Chemistry fees include charges of tuition fees, laboratory fees, and other miscellaneous expenses. The average fee for PhD Chemistry is around Rs. 98,000.

PhD Chemistry opens the door to diverse career opportunities for the candidates. Graduates after doing a doctorate in chemistry contribute to the fields of academia, industry, government, and research institutions. Graduates can pursue careers as research scientists, professors, consultants, or entrepreneurs. They get to work in fields such as pharmaceuticals, materials science, environmental science, and biotechnology.

PhD Chemistry provides candidates with diverse opportunities to excel in diverse careers. Candidates after completing PhD Chemistry and submitting their thesis can start working as Research Scientists, Academic Professors, Analytical Chemists, Process Development Engineers, and Government Scientists in different fields.

Research Scientist : The Research Scientist is responsible for conducting research, designing, experimenting to analyse and interpret data. He or She is also responsible for collaborating with different teams to solve complex scientific problems and contributing to innovation.

Lecturer : Lecturer works in colleges and universities and provides teaching and mentoring to undergraduate and postgraduate courses. He or She is responsible for serving on academic committees and contributing to the university research.

Analytical Chemist: Analytical Chemist develops and validates analytical methods for chemical analysis. He or She is responsible for performing qualitative and quantitative analysis and creating reports and presentations.

Process Development Engineer : Process Development Engineer is responsible for creating optimised chemical processes and scaling up laboratory processes. He or She also collaborates with engineers and technicians to implement process improvements.

Government Scientist: Government Scientist conducts research to work on scientific challenges relevant to government agencies. He or She also collaborates with industry and academic partners on research projects.

Top Recruiters:

Sun Pharmaceutical Industries

Lupin Limited

Reliance Industries Limited

TATA Chemicals

Department of Science and Technology (DST)

Indian Institutes of Technology (IITs)

Benefits of Studying PhD Chemistry

A doctorate in chemistry provides graduates with specialised knowledge, intellectual skills, and career advancement. It enhances critical thinking and problem-solving skills and provides cutting-edge research to the candidates. PhD Chemistry enables candidates to make significant contributions to scientific knowledge and society. PhD Chemistry also provides candidates with international opportunities.

PhD Chemistry provides a financially rewarding career to the candidates. The average expected salary for PhD Chemistry ranges from Rs. 3 LPA to Rs. 20 LPA. The salary for PhD Chemistry depends on the recruiter, the location of the recruiter, and the expertise and experience of the candidates.

Source: AmbitionBox

India has some very renowned colleges and universities that offer aspiring candidates with a doctorate in chemistry. These colleges are known for their comprehensive knowledge, facilities, and the coursework provided.

Top Private PhD Chemistry Colleges in India with Fees

India’s private colleges and universities offering PhD Chemistry are well known for their exceptional education facilities and infrastructure. These colleges are well renowned for their faculties, their coursework, and future opportunities.

Top Government PhD Chemistry Colleges in India with Fees

India also has some well-renowned Government colleges and universities like IITs offering doctorate in chemistry. These colleges at a minimal cost provide students with great facilities, good infrastructure, comprehensive curriculum.

PhD Chemistry is a doctoral programme that provides candidates with in-depth research facilities and an opportunity to create a thesis of their own on the selected discipline. PhD Chemistry opens the door to various career opportunities in the fields of research, science, technology, and management.

Frequently Asked Question (FAQs)

 PhD Chemistry is a doctoral programme that provides candidates with specialised research in various areas of chemistry. PhD Chemistry’s main goal involves writing a research thesis through rigorous research, surveys, analysis, and interpretation.

he duration of PhD Chemistry is three to six years.

Candidates after completing PhD Chemistry can become Research Scientists, Academic Professors, Analytical Chemists, Process Development Engineers, and Government Scientists.

Skills like Strong Foundation in Chemistry, Laboratory Skills, Critical Thinking, and Problem-Solving, Data Analysis and Interpretation, Literature Review and Research Design, and Communication Skills are important for success in a PhD programme in Chemistry.

To be eligible for PhD Chemistry, candidates must possess a master's degree of a minimum of two years in the same discipline.

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Questions related to Ph.D

Hello Chetan

Top universities offering phD in geology are mentioned here

Aligarh muslim university

Banaras Hindu university

  • University of Delhi

Amity university , Noida

Panjab university , Chandigarh

Alagappan university , Andhra Pradesh

IISER , Kolkata

Indian Institute of science education and research , Behrampur

Indian Institute of science education and research, pune , maharshtra

Guahati university

Patna university

IIT Roorkee

For detsils kindly visit the link given below

https://university.careers360.com/colleges/list-of-phd-in-geology-universities-in-india

In most universities, selecting a PhD supervisor or guide is a crucial step during the application process or shortly after being accepted. You need to find a faculty member whose research interests align with your own and who is willing to mentor you throughout your PhD journey. Even if not strictly mandatory during registration, it is highly recommended to start researching potential PhD supervisors well before applying. Reaching out to faculty members whose work interests you demonstrates your initiative and allows you to discuss potential research fit. https://www.careers360.com/phd-full-form I hope it helps !

These are some of best universities where you can do your PhD:

  • Jawaharlal Nehru University
  • Banaras Hindu University
  • Jamia Milia Islamia
  • Tezpur University
  • Aligarh Muslim University
  • Assam University
  • Visva Bharati University
  • University of Hyderabad
  • North-Eastern Hill University

Hope this information will help you. Thank you.

Yes, Indira Gandhi National Open University (IGNOU) offers a PhD program in Political Science that can be pursued through Hindi medium. One of IGNOU's objectives is to provide educational opportunities through Hindi and other Indian languages. IGNOU offers PhD programs in various subjects, including Hindi, through Hindi medium. Political Science is likely one of them. https://www.careers360.com/university/indira-gandhi-national-open-university-new-delhi I hope it helps!

Yes, Indira Gandhi National Open University (IGNOU) does offer a Ph.D. program in Political Science that can be pursued through Hindi medium. One of IGNOU's objectives is to make education accessible through Hindi and other Indian languages. Since IGNOU offers Hindi as a medium for various programs, it's safe to assume the Ph.D. in Political Science is also available in Hindi. https://university.careers360.com/download/ebooks/all-about-ignou I hope it helps!

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Visit the online course catalog for more specific degree requirements

Ph.D. Requirements

Credit Hours A minimum total 30 semester hours with at least 15 semester hours in chemistry courses. An overall GPA of 3.0 must be maintained.

Courses Students must pass at least 6 graduate lecture courses from at least 3 of 6 divisions with a minimum grade of 'C' in any one course during the first 4 semesters (excluding summers). Up to 2 courses may be waived for students entering with a M.S. degree in chemistry (or a closely related field with consent of the Chemistry Director of Graduate Studies).

Mentor The research mentor should be selected during the first semester. Students are required to interview a minimum of 5 chemistry faculty, including members of at least 2 divisions.

Committee The student will select his/her Dissertation Committee in consultation with the research mentor during the first 4 semesters of study. The committee consists of the mentor, a chemistry faculty in the same division, a chemistry faculty in a different division, an additional chemistry faculty, and a faculty member from a different department.

Cumulative Exams Students must complete a series of written cumulative examinations designed to show in-depth knowledge in the chosen area of concentration. Cumulative exams begin in the second semester and are given the third Saturday of January, March, May, September, and November.

Literature Seminar Students must enroll in seminar (Chem 695) each of their first 4 semesters (excluding summers) and attend departmental seminars. Students must make a presentation based on a topic under active discussion in the recent literature during their second or third semester. The remaining seminar attendance requirement may be waived after all other Master's candidacy requirements have been achieved.

Research Proposal Students must develop, explain, and defend a research proposal prior to the beginning of the 7th semester (excluding summers). The proposal may include preliminary results from the student's research and describe possible future directions.

Publications It is expected that prior to the Research Seminar, at least one manuscript based on the student's research would have been submitted to a peer-reviewed journal. Before completion of the Ph.D. program, at least one published article and at least one additional manuscript submitted to peer-reviewed journals is expected.

Research Seminar A one-hour seminar on the student's dissertation research project is to be given before the end of the 8th semester (excluding summers). This seminar must be completed at least 9 months prior to graduation. The MS degree will be awarded upon successful completion of the research seminar.

Dissertation A written dissertation describing the research program is submitted a minimum of 14 days before the defense. The defense consists of a one-hour seminar followed by an oral examination with the Faculty Reading committee.

Ph.D. Milestones

First Year Coursework Attend Seminars Select a Mentor Begin Research Begin Cumulative Exams (2nd semester) Literature Seminar (early)

Second Year Continue/Finish Coursework Continue/Finish Cumulative Exams Literature Seminar (deadline 3rd semester) Attend Seminars Research Organize Dissertation Committee

Third Year Research Finish Cumulative Exams Research Proposal

Fourth Year Research Research Seminar* *M.S. degree awarded

Fifth Year Finish Research Write and defend Dissertation* *Ph.D. awarded

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PhD in Chemistry

PhD in Chemistry

Known for Research

Chemistry is at the core of breakthroughs in disciplines as diverse as medicine, technology, nanomaterials and environmental science. PhD students in Clarkson University's chemistry program have the opportunity to participate in research and work alongside world-renowned faculty committed to sharing their knowledge.

Our faculty advisors educate you with the knowledge and skills you need to solve complex problems that impact society, ranging from smart materials to sensors, biotechnology and electronics. Graduate research is supported by federal agencies like the National Science Foundation (NSF), National Institutes of Health (NIH) and Department of Defense (DoD), as well as New York State and private industry.

Our small size encourages faculty to provide personalized training and exceptional mentoring focused on student success.

Why Earn a PhD in Chemistry From Clarkson?

We're driven by research at Clarkson. Our traditional strength is in areas such as colloids, surfaces, electrochemistry and analytical chemistry — topics underpinning much of the work done by our faculty.

Graduate students regularly publish their work in top scientific journals and have the opportunity to present research at national and international conferences. Professional organizations and student chapters are available on campus, including the American Chemical Society (ACS) and the Electrochemical Society (ECS). Students have access to a variety of professional development opportunities focusing on areas like research mentoring, entrepreneurship and leadership.

In our small department, faculty share their knowledge with students while collaborating on joint projects. Graduate students conduct research on projects spanning traditional core areas in analytical, inorganic, organic, biochemistry and physical chemistry, as well as interdisciplinary fields like materials chemistry, bionanotechnology and environmental sustainability.

Get hands-on experience with state-of-the-art instrumentation, like nuclear magnetic resonance (NMR) spectroscopy, mass spectrometry, gas chromatography-mass spectrometry (GC-MS) and high-performance liquid chromatography (HPLC).

Other instruments available for teaching and research include electron microscopes, UV/visible, fluorescence and atomic absorption spectrometers, mass spectrometers, X-ray diffractometers, particle sizers and thermal and mechanical analyzers.

Outside the lab, seminars and lectures expose students to the groundbreaking research conducted here and around the world. Our Shipley Distinguished Lecture Series has brought nine Nobel laureates to campus.

Curriculum Overview

PhD candidates in chemistry select a concentration from the following:

  • Analytical chemistry
  • Biochemistry
  • Colloids and surface chemistry
  • Environmental chemistry
  • Materials chemistry
  • Organic and inorganic chemistry
  • Physical (theoretical) chemistry

Sample courses include:

  • Advanced Bioanalytical Chemistry
  • Biochemistry & Biotechnology Lab
  • Biomedical Analysis and Instrumentation
  • Bioelectronics & Bio-nanotechnology
  • Colloids and Surface Science
  • Implantable and Wearable Bioelectronics
  • Sustainable Nanotechnology
  • Thesis, Dissertation and Special Projects
  • Biomaterials
  • Manufacturing Implications/Advanced Materials
  • Medicinal Chemistry
  • Nanostructured Materials
  • Colloids and Interfaces
  • Physical Organic Chemistry
  • Polymer Science
  • Special Topics/Colloids and Surfaces

The PhD in Chemistry consists of 90 credit hours beyond a bachelor's degree. These credits are taken through coursework, seminars and project work to fulfill all PhD requirements.

Requirements include the following:

  • A minimum of 90 credit hours, including no less than 24 credit hours of coursework, a six credit-hour seminar and a maximum of 30 transferred credit hours from a Master of Science degree (B grade or better) applied toward PhD degree requirements.
  • A minimum of three academic years of full-time graduate study or the equivalent in part-time study.
  • Satisfactory completion of the PhD candidacy procedure within two years of full-time study after admission to the PhD program or, for part-time students, before completing 66 credit hours. If the comprehensive examination is failed twice, the student is required to leave the program.
  • A written dissertation must be submitted by each candidate and defended orally as part of the final examination. For the final oral examination, a committee is selected by the faculty advisor and approved by the department chair and dean of the respective school. The committee consists of a minimum of five members. The members should include at least four Clarkson faculty of assistant professor rank or higher who possess an earned doctoral degree. At least one of the faculty members must be from a department other than the candidate’s major department.
  • Time limit: After the comprehensive examination has been passed, all work fulfilled specifically for the doctorate is to be completed within a period of seven calendar years.
  • Grading system: The grades of A+, A, A-, B+, B, B-, C+, C and P are acceptable for credit toward the degree. For graduation, an average of B or better must be earned in non-dissertation courses and seminar work.
  • PhD candidates in chemistry must: (i) Complete a minimum of six credit hours of CM900 and (ii) present three seminars as part of their degree requirements.

Faculty members are associated with the New York State-funded Center for Advanced Materials Processing and several other interdisciplinary programs on campus. Their research is supported by sources including grants from the National Science Foundation, as well as New York State and private industry funding.

Current areas of research include:

  • Analytical, electrochemistry and sensors
  • Biochemistry and biotechnology
  • Inorganic and solid-state chemistry
  • Nanotechnology and nanomaterials
  • Organic, polymers and soft materials
  • Physical and computational chemistry

A complete application consists of the following:

  • Online Application Form
  • Statement of purpose
  • Three letters of recommendation
  • Official transcripts
  • GRE Test Scores: the GRE requirement will be waived for spring and fall 2024 applicants.
  • For international applicants, an English proficiency test is required:
  • Minimum test score requirements: TOEFL (80) and TOEFL Essentials (8.5), IELTS (6.5), PTE (56) or Duolingo English Test (115).
  • The English language-testing requirement is not waived based on language of instruction, nor do we accept university certificates. English testing is waived if an applicant has a degree from a country where English is the Native Language. Click here to see the list of these countries.

PhD prerequisites: Applicants must possess a baccalaureate (BS) or a Master of Science (MS) degree in chemistry or a related major (e.g., materials science, biochemistry, biophysics, environmental science or a similar discipline).

Applicants must have also completed the following minimum college course preparation:

  • Introductory chemistry courses, including general chemistry.
  • Specialized classes, including:
  • Inorganic chemistry
  • Organic chemistry
  • Physical chemistry.
  • Basic training in mathematics and physics.

Small Sensation

In many communities around the world, people have no way of knowing whether the water they rely on is safe. One Clarkson PhD student is working to build small, inexpensive sensors that can alert residents to hazards before it's too late.

Career Possibilities

Clarkson's emphasis on research allows you to focus on an area of chemistry where you want to make an immediate impact. After defending your dissertation, you can choose from career paths in:

  • Biotechnology
  • Forensic labs
  • Industry (e.g., electronics, environmental, healthcare, energy or law)
  • Research and development
  • State and federal agencies

Clarkson's faculty have extensive ties to the chemical and advanced materials industries. These relationships can result in opportunities for technology transfer and jobs. Some of the places our alumni work include:

  • Applied Materials
  • Abbott Diabetes Care
  • AireSun Global
  • CFD Research
  • Ferro Corporation
  • Ford Motor Company
  • Ichor Therapeutics, Inc.
  • Lydall Performance Materials
  • Saint-Gobain
  • Siemens Healthineers

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Contact us .

Graduate Admissions   Email: [email protected]   Phone: 518-631-9831

Interested in learning more about the PhD in Chemistry at Clarkson? Contact the Office of Graduate Admissions today with your questions.

100% Graduate Placement Rate - Program Specific

Destination: Anywhere

Next-generation sensors. Biotech product development. Building biobatteries for the military. Students in Clarkson's PhD program in chemistry come from everywhere — and can go anywhere.

See Where our Alumni End Up

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Take the next step.

A PhD in Chemistry from Clarkson can lead to careers in fields as diverse as healthcare, biotech and pharmaceuticals. Ask us for more information today.

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Ph.d – chemistry.

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Dr Mrinmoyee Basu has been selected for the presti...

15 May, 2024 | Pilani

PhD Admissions | 2024-25

14 May, 2024 | K K Birla Goa

Workshop on “Collaborative Teaching-Learning Pro...

30 April, 2024 | K K Birla Goa

Inauguration of the HSS Media Lab.

20 April, 2024 | K K Birla Goa

BITS Pilani – RMIT PhD Recruitments

17 April, 2024 | K K Birla Goa

An International Conference on Sustainable Urban W...

6 April, 2024 | Hyderabad

Ph.D. Admission Open for Second Semester, Academic...

5 April, 2024 | K K Birla Goa

National Symposium on Current Trends in Pharmac...

1 April, 2024 | Hyderabad

Research Methodology Workshop Series on Conducting...

22 March, 2024 | K K Birla Goa

Ph.D. Admission open for 2024-25

21 March, 2024 | K K Birla Goa

Research Methodology Workshop Series on Action Res...

17 March, 2024 | K K Birla Goa

Research Methodology Workshop Series on Ethnograph...

International women’s day celebrations ̵....

6 March, 2024 | Hyderabad

Admission to the Ph.D Programme (Full-time and Par...

4 March, 2024 | Pilani

BITSAT-2024

29 February, 2024 | Pilani

Celebration of Founder’s Day with great enthusia...

27 February, 2024 | Pilani

International conference on Wit, Humour, and the C...

13 February, 2024 | K K Birla Goa

Research Methodology Workshop Series Topic – Dat...

6 February, 2024 | K K Birla Goa

Research Methodology Workshop Series Topic –...

27 January, 2024 | K K Birla Goa

HSS Research Forum invites you for Research Method...

15 January, 2024 | Hyderabad

2024 Batch Reunion for Batches of 2012 & 2013

11 January, 2024 | Hyderabad

IUCN CEM Forest Ecosystem Specialist Group, CEM So...

11 December, 2023 | K K Birla Goa

An international workshop on: Depth, Surface and M...

1 December, 2023 | K K Birla Goa

Overseas Student Doctoral Programme Academic Year ...

30 November, 2023 | Pilani

One – day International Workshop as part of...

14 November, 2023 | K K Birla Goa

Indian-European Advanced Research Network & De...

7 November, 2023 | K K Birla Goa

 Beaux Arts and the Second Empire

26 September, 2023 | K K Birla Goa

JOINT PH.D. SCHOLARSHIP – BITS PILANI AND RMIT U...

18 September, 2023 | Pilani

16 September, 2023 | Pilani

12 September, 2023 | Pilani

BITS RMIT PhD Admission | Sem-II 2023-24

7 September, 2023 | Pilani

BITS Pilani launches PhD Program to create Deep Te...

18 August, 2023 | Pilani

Independence Day was celebrated at BITS Pilani, Pi...

15 August, 2023 | Pilani

Convocation 2023 held at BITS Pilani, Pilani campu...

Class coordinators for fd and hd programs.

11 August, 2023 | Pilani

List of Electives (1st SEM)

Farewell to phd scholar saurabh mundra., admissions 2017, iccd3 2-4 march 2017- some glimpses, department of pharmacy at bits pilani, pilani camp..., applications are invited from the eligible candida..., jrf position in dst-rajasthan project (dr. anupama..., jrf position in industry sponsored project on “n..., phd admission in i sem 2018-19, bits m. pharm-2018 advertisement, applications are invited from suitable candidates ..., dr anil jindal conferred with eudragit award 2017 ..., mr. ginson george (ph.d. scholar working with dr. ..., bits admission test – 2019 “bitsat-2019..., phd short listing criteria, phd admission in i sem 2019-20, jrf positions under dr. deepak chitkara and dr. an..., jrf for “the office of principal scientific advi..., dst inspire fellowship to mr. prashant auti (phd r..., dr. p.d. sethi memorial national award 2019 confer..., call for research position (jrf / srf) in indo-aus..., ph.d admission in first semester 2021-22, world pharmacist day celebrated on 25th september ..., applications are invited from interested and motiv..., mr. arihant kumar singh, phd scholar working with ..., mr. s n c sridhar (ph.d research scholar working w..., phd admission in ii sem 2018-19, jrf position in an icmr sponsored project under dr..., dr. atish t. paul conferred the “best professor ..., guest lecture delivered by dr. sanyog jain, associ..., miss arisha mahmood (m.pharm, ii semester ) won th..., jrf position under dr. anupama mittal in icmr spon..., jrf position under dr. paul atish tulshiram in dst..., jrf position under prof. ranendra n. saha (pi) &am..., mr. kishan s italiya (ph.d. research scholar) work..., a two day workshop on pharmacokinetic & pharma..., ph.d admission in first semester 2020-21, pharmacist day celebrated at department of pharmac..., international virtual conference on drug discovery..., 03 phd scholars (department of pharmacy) selected ..., virtual conference on regulatory aspects and intel..., prof. rajeev taliyan conferred the nams membership..., miss violina kakoty, phd scholar working with prof..., ms. paramita saha (ph.d. scholar working under dr...., virtual conference on pharmacy: always trusted for..., deepak kumar sahel, phd scholar with prof. deepak ..., deepak kumar sahel, ph.d. student working with pro..., ms. shreeya p shah (b. pharm. 2ndyear) working wit..., disso research presentations india (drpi) 2022, department of pharmacy, bits pilani has organised ..., dr. raj kumar gupta visited raman research instit....

10 August, 2023 | Pilani

Dr. Manjula Devi visited IISC Bangalore for a coll...

“fp7-people-irses msnano network”, which is be..., recently department of physics has started its own..., international project on msnano of european commis..., international workshop on data analytics & app....

3 August, 2023 | Pilani

INDO – CHILE Workshop on BIG Data

Workshop on blockchain technology and applications, congratulations to dr. mamta devi sharma for her s....

1 August, 2023 | Pilani

Congratulations to Dr. Bintu Kumar for his success...

Welcome dr. nitika grover in the department of che..., congratulations to dr. jyothi yadav for her succes..., congratulations to dr. chikkagundagal k. mahesha f..., congratulations to dr. amol prakash pawar for his ..., heartiest congratulation to manisha for receiving ..., congratulation to prof. indresh kumar for receivin..., one jrf/project associate-i position is available ..., applications are invited from highly motivated and..., chemistry department seminar are held on every thu..., aspects of effective teaching.

22 July, 2023 | Hyderabad

Convocation 2023

20 July, 2023 | Hyderabad

The Indian Mathematical Society (IMS)-2023

19 July, 2023 | Hyderabad

13 June, 2023 | Pilani

Learn more about BITS-RMIT Higher Education Academ...

9 June, 2023 | Pilani

BITS Pilani invites applications to register for P...

11 May, 2023 | Pilani

Admission to Ph.D Programmes

2 May, 2023 | Hyderabad

Bachelor of Science in Computer Science

20 April, 2023 | Pilani

President Droupadi Murmu confers Padma Bhushan, In...

28 March, 2023 | President Droupadi Murmu confers Padma Bhushan, India’s third-highest civilian award, to our Chancellor Dr. Kumar Mangalam Birla at the Rashtrapati Bhavan.

BITS Law School, Mumbai Campus

9 March, 2023 | Mumbai

26 January, 2023 | Pilani

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26 January, 2023 | K K Birla Goa

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National startup investor day celebrated by bits p....

18 January, 2023 | K K Birla Goa

National Symposium on Convergence of Chemistry �...

3 January, 2023 | Hyderabad

2 Day National Workshop on Challenges in Welding a...

Chancellor’s medal winners 2022.

2 January, 2023 | Dubai

International conference on ‘Aggregation-Induced...

24 December, 2022 | K K Birla Goa

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19 December, 2022 | Dubai

Heartiest congratulation to sumit for receiving th...

16 December, 2022 | Pilani

BPDC’s Wall Street Club Secures the Top Posi...

16 December, 2022 | Dubai

Utilizing microbiome science to improve host healt...

26 November, 2022 | Pilani

AUTO Ltd. SCHOLARSHIP Announcement

24 November, 2022 | Pilani

FDP on Sustainability in Civil Engineering begins ...

21 November, 2022 | Pilani

Programmable DNA nanodevices to instruct biologica...

19 November, 2022 | Pilani

SPARKS 2022

31 October, 2022 | Dubai

Identifying risk predictors for Cardiovascular Dis...

31 October, 2022 | Pilani

GANDHI JAYANTI

28 October, 2022 | Dubai

Studying the mechanisms underlying anti-inflammati...

26 October, 2022 | Pilani

Chemistry department has organized DST-STUTI works...

15 October, 2022 | Pilani

Innate immune recognition of bacterial toxins

14 October, 2022 | Pilani

Cell Counting As A Part Of The Animal Cell Technol...

27 September, 2022 | Pilani

5 September, 2022 | Pilani

Memorandum of Understanding (MoU)

30 August, 2022 | Pilani

ICON-BITS-2023

25 August, 2022 | Pilani

22 August, 2022 | Pilani

Convocation 2022, Pilani Campus

Independence day celebration- 2022.

15 August, 2022 | Pilani

Drosophila eye model to study patterning and dise...

2 May, 2022 | Pilani

Informatics-Driven Advances in Biological Sciences

2 March, 2022 | Pilani

Lung cancer and Lung cancer screening

8 February, 2022 | Pilani

Sleep modulation by glial transporters in Drosophi...

23 October, 2021 | Pilani

Applications of Synthetic Biology in Metabolic Eng...

Engineering analysis of living systems.

15 June, 2021 | Pilani

Genesis issue

24 April, 2021 | Pilani

The joys and sorrows of any life in science

6 March, 2021 | Pilani

Deeper exploration of cellular heterogeneity with ...

22 February, 2021 | Pilani

Biomolecular interactions measurement using Thermo...

12 February, 2021 | Pilani

A Demo on ‘FPLC’

29 January, 2021 | Pilani

Indian Workshop on Applied Deep Learning (IWADL201...

15 December, 2019 | Pilani

One day Workshop on Blockchain Technology and Appl...

10 November, 2019 | Pilani

International conference on Intelligent Human Comp...

12 December, 2016 | Pilani

Department of Physics, BITS Pilani has successfull...

5 November, 2015 | Pilani

“International Conference on Soft Materials&...

6 October, 2014 | Pilani

Indo-Chile Workshop on Big Data 2014 (ICWBD)

4 June, 2014 | Pilani

The Department of Physics, BITS Pilani, Pilani Cam...

23 March, 2014 | Pilani

Department of Physics, BITS Pilani organized a wor...

7 March, 2014 | Pilani

“Proton acceleration by circularly polarized...

8 July, 2013 | Pilani

Dr. Tapomoy Guha Sarkar taught a course on General...

1 July, 2013 | Pilani

“Thermal studies on materials: A case study...

20 June, 2013 | Pilani

Dr. Tapomoy Guha Sarkar visited the Department of ...

10 June, 2013 | Pilani

Dr. Navin Singh has delivered an invited lecture o...

30 March, 2013 | Pilani

Dr. Anshuman Dalvi has delivered an invited lectu...

Research paper titled “conformational and or....

25 March, 2013 | Pilani

26 February, 2013 | Pilani

“Program on CP Violation in elementary parti...

19 February, 2013 | Pilani

Dr. Jayendra N Bandyopadhyay has delivered Colloqu...

Dr. jayendra n bandyopadhyay has delivered prestig....

18 February, 2013 | Pilani

Dr. Jayendra N Bandyopadhyay has delivered an ivi...

25 January, 2013 | Pilani

Dr. Madhukar Mishra has recently given a talk on &...

18 January, 2013 | Pilani

Dr. Jayendra N Bandyopadhyay has delivered an invi...

6 January, 2013 | Pilani

Dr Subhashis Gangopadhyay presented a paper title...

3 January, 2013 | Pilani

Dr. Tapomoy Guha Sarkar participated in the ASTRON...

19 December, 2012 | Pilani

Workshop on Introduction to Graphs and Geometric A...

22 January, 2009 | Pilani

Pilani, K K Birla Goa, Hyderabad

One of the oldest & ever-evolving department having a vision to excel in teaching & research. Active research in the frontier areas of both fundamental and applied chemistry has been appreciated nationally & globally over past decades. The department continues to grow and attain new paradigms in chemistry education in the country

  • 29 (893.9 Lacs) Government Sponsored Projects (last 5 years)
  • 2 (54.8 Lacs) Industry Sponsored Project
  • 252 Publications (last 5 years)
  • 2000 Average Citations/year

Research Areas

The department offers a full time Ph.D. programme in the following thrust areas of its research.

  • Green Chemistry and Catalysis
  • Organic and Medicinal Chemistry
  • Synthetic Chemistry & Materials Science
  • Theoretical and Computational Chemistry
  • Photochemistry and Gas Phase Spectroscopy
  • 60% marks in M.Sc. (Chemistry) or equivalent
  • Suitable match between academic background and research area
  • Selection test consists of written exam followed by interview
  • UGC – NET qualified candidates are encouraged to apply
  • INR 28,000 or 31,000 per month as per the intake qualification.
  • All full time students have to undertake 8-10 hrs of TA work as assigned by the institute. Two-semester course work for candidates with M.Sc. Qualification

To learn more about the Ph.D admissions process at BITS Pilani, please visit the website https://www.bitsadmission.com

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Amrita Chatterjee

phd chemistry full form

Dr. Abhishek Saha

Assistant ProfessorDepartment of Chemistry

& Chemical Biology), Biophysical Chemistry, (Organic Chemistry, THE ART OF INTRACELLULAR CHEMICAL DELIVERY

phd chemistry full form

Dr. Ajay Kumar Sah

Professor, Department of Chemistry, Nucleus Member, CPU, BITS Pilani, Pilani Campus

phd chemistry full form

Dr. Amrita Chakraborty

DST Woman Scientist , Department of Chemistry

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Dr. Anil Kumar

Professor, Department of Chemistry, BITS Pilani, Pilani Campus

phd chemistry full form

Dr. Anjan Chattopadhyay

Professor, Department of Chemistry

Computational Photochemistry

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Graduate School

Biochemistry (ph.d.), biochemistry (ph.d.) | graduate.

Our Biochemistry doctoral students are at the forefront of biochemical research and molecular medicine, examining biological mechanisms underlying human disease; they are finding new ways to detect and attack diseases and immunological disorders like cancer, neurological disorders, and cardiovascular disease.

Graduates of the Ph.D. in Biochemistry program at Howard's Graduate School are prepared for careers at top research universities and senior-level research positions in biomedical and related industries. The program's key strengths in molecular microbiology, proteomics and genetics, bioinformatics, and drug design and discovery make us a nexus for collaborative investigations between biochemistry researchers and clinicians. You'll learn to apply biochemical techniques, including NMR spectroscopy, crystallography, and single-molecule methods as well as contemporary approaches to cell culture and genetic analysis to answer key questions about the pathogenesis of specific diseases and the development of effective drug therapies. You'll also enjoy the close mentorship of faculty who are committed to your professional development. Our faculty are experts in several areas of biochemistry, including analysis of molecular structure, proteomics and genetics, tumor biology, structural biology, enzymology, RNA catalysis, stress response, and RNA modification. As you advance in the program, you'll become increasingly involved in laboratory research and the critical analysis of biochemical literature. Our graduate seminar series offers a venue to present your early-stage research. Students may pursue a dual M.D./Ph.D. degree.

Program Snapshot

      ❱  72 credit hours        ❱  Full-time       ❱  On-campus format       ❱  Degree: Ph.D.       ❱  Dual degree: M.D./Ph.D.

Application Deadlines

Spring 2024 entry:         ❱  No spring entry 

Fall 2024 entry:         ❱  Dec. 1, 2023 (early deadline)       ❱  Feb. 15, 2024 (priority deadline)       ❱  Apr. 15, 2024 (final deadline)

Applicants should submit their applications as early as possible for earlier consideration of departmental funding opportunities. Applicants have until the final deadline to apply. However, applications will be reviewed on a rolling basis throughout the admissions cycle. 

Dr. Zaki Sherif

Dr. matthew george, jr., angela wilson, program details.

  • Degree Classification: Graduate
  • Related Degrees: M.D. / Ph.D., Ph.D.

Admission Requirements

Application for admission.

  • Online GradCAS application
  • Statement of purpose/ Statement of academic interest ( 500-1,000 words )
  • GRE scores  not required
  • Official transcripts sent to GradCAS
  • 3 letters of recommendation
  • Bachelor's degree from an accredited college or university or the international equivalent 
  • Resume or Curriculum Vitae
  • Autobiographical statement ( 500-750 words )

GRE Required?

Gre preferred minimums.

  • GRE Verbal Reasoning: N/A
  • GRE Quantitative Reasoning: N/A
  • GRE Analytical Writing: N/A

GPA Required Minimums

  • Overall GPA minimum: 3.0
  • Undergrad GPA minimum: 3.0

Prerequisite Courses

The following course prerequisites are required. Applicants are required to have at least a B average in these prerequisites.   No expiration date for recommended prerequisites.

  • Biology (college-level courses, 8 semester credit hrs)
  • General Chemistry (college-level courses, 8 semester credit hrs)
  • Organic Chemistry (college-level courses, 8 semester credit hrs)
  • Elementary Physical Chemistry (college-level course and lab, 4 semester credit hrs)
  • Physics (college-level courses, 8 semester credit hrs)
  • Calculus  (college-level course, 3 semester credit hrs)

Reference Requirements

Evaluator type accepted:

  • Professor (Required)
  • Supervisor/Manager
  • Other 

Evaluator type not accepted:

  • Family Member

All Souls College, Radcliffe Camera and Brasenose College at dawn

A-Z of courses

Use this A-Z and search tool to explore all of Oxford's graduate courses. 

Non-standard application processes

The instructions in our Application Guide are relevant to applications for all graduate courses at Oxford, except for :

  • Biochemistry (Skaggs-Oxford Prog.) , DPhil
  • Biomedical Sciences (NIH OxCam) , DPhil
  • Clinical Psychology , DClinPsych
  • EcoWild , NERC CDT
  • Medicine (Graduate Entry)  eg BMBCh
  • Saïd Business School courses

Important notice

Please note that websites external to the University of Oxford may hold information on our courses.  Those websites may contain incomplete and inaccurate information. Please refer to this website which provides the definitive and up-to-date source of information on any graduate course offered by the University.

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  • Supporting Science

2024 Faculty of Science Excellence Award winners announced

Michelle Maillet, Lauren Kay, Chantal Marotte, and Moshe Dalva

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Michelle Maillet (Academic Associate), Lauren Kay (Clerical), Chantal Marotte (Management), and Moshe Dalva (Technical) have been named recipients of the Faculty of Science Excellence Awards.  

These awards, announced at the Faculty of Science Council meeting on May 21st, recognize the outstanding contributions made by members of the Faculty’s administrative and support staff during the 2023-2024 academic year.  

Read below the citations prepared by the Faculty of Science Excellence Awards Committee. 

Michelle Maillet, Department of Geography, Faculty of Science Excellence Award for Academic Associates  

As Undergraduate Advisor, Michelle Maillet has been responsible since 2014 for guiding students through their programs in the Department of Geography. Her job expanded in 2019 when she became full-time advisor for the Interfaculty program in Sustainability Science and Society. As a steadfast supporter of students’ interests, Michelle consistently goes the extra mile to provide students with outstanding support. One of many examples of this is her organization of extra mid-semester activities centered around arts and crafts that enable students to connect, socialize, and let off steam. She has a university-wide reputation as an exceptionally caring undergraduate advisor, to the point where many students name their interactions with her as their favourite part of being a Geography student.  For all these reasons and many more, I am very happy to present the Faculty of Science Excellence Award for Academic Associates to Michelle Maillet. 

Lauren Kay, Department of Physics, Faculty of Science Excellence Award for Clerical Staff  

Since 2010, Lauren Kay has served the Department of Physics with great distinction as the Graduate Program Coordinator. This is a huge responsibility, as Physics has about 200 graduate students, many of whom are international, with around 80 new entrants to be selected and around 80 who complete their programs each year. Lauren has made exceptional efforts to ensure that students progress through their thesis work smoothly, from streamlining procedures for paying them to constituting their thesis committees and coordinating their final defenses. She handles changing or exceptional circumstances, such as students having sudden visa problems, with considerable skill and good grace.   For all these reasons and many more, I am very happy to present the Faculty of Science Excellence Award for Clerical staff to Lauren Kay. 

Chantal Marotte, Department of Chemistry, Faculty of Science Excellence Award for Management Staff   

Chantal Marotte has been with the Department of Chemistry for 38 years and has been managing the graduate program in Chemistry since 2003. She handles a range of activities, including filling TA positions, assessing graduate applications, and, perhaps most importantly, ensuring the well-being of graduate students with exceptional dedication and skill. At one point, she intervened extensively to find financial support for a student who experienced substantial loss because of a fire in their residence building. How much Chantal has touched the hearts of Chemistry students was made evident by a compilation of video testimonials that students and alumni made in 2021 to thank her for her efforts.  For all these reasons and many more, I am very happy to present the Faculty of Science Excellence Award for Management staff to Chantal Marotte. 

Moshe (Mike) Dalva, Department of Geography, Faculty of Science Excellence Award for Technical Staff   

Moshe (Mike) Dalva has been a Research Technician in the Department of Geography since 2004 and is also an MSc graduate from the same department. He couples exceptional understanding of the theory behind the intricate, complex, and sometimes old, pieces of equipment in Burnside Hall with remarkable technical skill in operating and fixing them. In one instance where an equipment failure appeared to be terminal, Mike was able to diagnose and begin fixing the problem within an hour, potentially saving the student who relied on this equipment many months of delay. He is deeply dedicated to ensuring that researchers conduct their work safely, not just in a laboratory setting but also in remote field locations, where he also provides essential support.   For all these reasons and many more, I am very happy to present the Faculty of Science Excellence Award for Technical staff to Moshe Dalva. 
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