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Materials Science and Engineering

Catalog pages 467-475

Subject abbreviation: MSE The Marlan and Rosemary Bourns College of Engineering

Juchen Guo, Ph.D., Chair Materials Science and Engineering Program 313 Materials Science and Engineering Building;

  • (951) 827-4414

https://www.mse.ucr.edu/

Program Faculty Distinguished Professors Reza Abbaschian, Ph.D. (Mechanical Engineering) Pingyun Feng (Chemistry) Umar Mohideen, Ph.D. (Physics and Astronomy) Ashok Mulchandani, Ph.D. (Chemical and Environmental Engineering) Jing Shi (Physics) Kambiz Vafai, Ph.D. (Mechanical Engineering) Michael R. Zachariah, Ph.D. (Chemical and Environmental Engineering) Francisco Zaera, Ph.D. (Chemistry)

Professors Christopher Bardeen, Ph.D. (Chemistry) Ludwig Bartels, Ph.D. (Chemistry) Boniface Fokwa Ph.D. (Chemistry) Nathaniel Gabor Ph.D. (Physics and Astronomy) Juchen Guo Ph.D. (Chemical and Environmental Engineering) Roger Lake, Ph.D. (Electrical and Computer Engineering) Huinan Liu Ph.D. (Bioengineering) Jianlin Liu, Ph.D. (Electrical and Computer Engineering) Christopher Lynch, Ph.D. (Dean, BCOE) Lorenzo Mangolini Ph.D. (Mechanical Engineering) Allen Mills, Ph.D. (Physics and Astronomy) Leonard Mueller, Ph.D. (Chemistry) Cengiz Ozkan, Ph.D. (Mechanical Engineering) Mihri Ozkan, Ph.D. (Electrical and Computer Engineering) Victor Rodgers, Ph.D. (Bioengineering) Harry W.K. Tom, Ph.D. (Physics and Astronomy) Kathryn Uhrich, Ph.D. (Dean, College of Natural & Agricultural Sciences) Valentine Vullev, Ph.D. (Bioengineering) Bryan Wong Ph.D. (Chemical and Environmental Engineering) Jianzhong Wu, Ph.D. (Chemical Engineering) Yadong Yin, Ph.D. (Chemistry)

Associate Professors Sinisa Coh Ph.D. (Mechanical Engineering) Shane Cybart, Ph.D. (Mechanical Engineering) Juan Pablo Giraldo, Ph.D. (Botany and Plant Sciences, CNAS) Alexander Greaney Ph.D. (Mechanical Engineering) Elaine Haberer, Ph.D. (Electrical and Computer Engineering) Chen Li Ph.D. (Mechanical Engineering) Fudong Liu, Ph.D. (Chemical and Environmental Engineering) Ming Liu, Ph.D. (Electrical and Computer Engineering) Younjin Min, PhD. (Chemical and Environmental Engineering) Jin Nam, Ph.D. (Bioengineering) Masaru Rao, Ph.D. (Mechanical Engineering) Peng Wei Ph.D. (Physics and Astronomy) Richard Wilson Ph.D. (Mechanical Engineering) Ruoxue Yan, Ph.D. (Chemical and Environmental Engineering)

Assistant Professors Igor Barsukov, Ph.D. (Physics and Astronomy) Xi Chen, Ph.D. (Electrical and Computer Engineering) Ran Cheng, Ph.D. (Electrical and Computer Engineering) Matthew Conley, Ph.D. (Chemistry) Yongtao Cui, Ph.D. ( Physics and Astronomy) Ke Du, Ph.D. (Chemical and Environmental Engineering) Ahmed El-Moghazy, Ph.D. (Microbiology and Plant Pathology) Boerge Hemmerling (Physics) Ruoqian Lin, Ph.D. (Mechanical Engineering) Tamar Mentzel (Mechanical Engineering) Timothy Su (Chemistry) Luat Thanh Vuong, Ph.D. (Mechanical Engineering) Dmytro Zagrebelnyy (Mechanical Engineering) ** Adjunct Professor Matthew Gilbert, Ph.D.

Major

The B.S. degree in Materials Science and Engi- neering is offered jointly by the five participating departments of The Marlan and Rosemary Bourns College of Engineering. The program aims to produce students who are effective team players in materials engineering or related engineering, science or managerial positions, who use and im- prove on their skills in the job; who can enter into graduate or professional degree programs; and who are responsible engineers, professionals or scientists demonstrating ethical and professional responsibility and continuing to learn through a variety of educational experiences.

The Materials Science and Engineering Pro- gram Educational Objectives are to prepare our graduates to impact an evolving society by producing materials science and engineering constituents who:

• are successful in both education and industry

• can demonstrate professionalism and leadership in cutting edge interdisciplin- ary materials science and engineering practices

• can utilize an understanding of the princi- ples of materials science and engineering to improve existing systems and innovate and design next generation technologies

• will contribute effectively as individuals, team members, and/or leaders to achieve personal, group and institutional goals.

The Bachelor of Science in Materials Science and Engineering (MSE) Program is accredited by the Engineering Accreditation Commission (EAC) of ABET, abet.org, under the commission’s General Criteria and Program Criteria for Materials (1), Metallurgical (2), Ceramics (3) and Similarly Named Engineering Programs. For additional details, visit https://www.mse.ucr.edu/accreditation/.

Change of Major Criteria

All students who request a change of major to Materials Science and Engineering must meet the following requirements:

• Be in good academic standing

• Have no less than a C- in any Math, Science and Engineering coursework

• Have a minimum 2.0 GPA in all Math, Science and Engineering required coursework

• Be able to complete major within maximum allowable units

• Complete all the courses listed below, based on the total number of units earned, prior to submitting the major change request

• UCR transfer students interested in changing to a BCOE major must have been admissible to the major at point of entry, or must satisfy transfer admission and change of major requirements before earning 120 units

• If changing in the 90-119 units category student must have the ability to complete major within 5 years of entry as a Freshmen or 3 years after entry as a Transfer student

• Students who have earned 120 or more units are not eligible for a change of major in BCOE. NOTE: AP/IB units are excluded from maximum unit calculation

Completed 0 to less than 45 units Completion of ENGL 001A with C or better and completion of the following with at least 2.500 GPA:

• CHEM 001A or CHEM 01HA

• CHEM 01LA or CHEM 01HLA

• CHEM 001B or CHEM 01HB

• CHEM 01LB or CHEM 01HLB

• MATH 009A or MATH 09HA

• MATH 009B or MATH 09HB

• PHYS 040A or PHYS 040HA

Completed 45 to less than 90 units Completion of ENGL 001A with C or better and completion of the following with at least 2.500 GPA:

• BIOL 005A or BIOL 05HA

• BIOL 05LA or BIOL 05HLA

• CHEM 001A or CHEM 01HA

• CHEM 01LA or CHEM 01HLA

• CHEM 001B or CHEM 01HB

• CHEM 01LB or CHEM/01HLB

• MATH 009A or MATH 09HA

• MATH 009B or MATH 09HB

• MATH 009C or MATH 09HC

• PHYS 040A or PHYS 040HA Completed 90 to less than 120 units Completion of ENGL 001A and ENGL 001B with C or better and completion of the following with at least 2.500:

• BIOL 005A or BIOL 05HA

• BIOL 05LA or BIOL 05HLA

• CHEM 001A or CHEM 01HA

• CHEM 01LA or CHEM 01HLA

• CHEM 001B or CHEM 01HB

• CHEM 01LB or CHEM 01HLB

• CHEM 001C or CHEM 01HC

• CHEM 01LC or CHEM 01HLC

• MATH 009A or MATH 09HA

• MATH 009B or MATH 09HB

• MATH 009C or MATH 09HC

• PHYS 040A or PHYS 040HA

University Requirements

See Undergraduate Studies section.

College Requirements

See The Marlan and Rosemary Bourns College of Engineering, Colleges and Programs section.

The Materials Science and Engineering major uses the following major requirements to satisfy the college’s Natural Sciences and Mathematics breadth requirement.

  • 1. One course in the biological sciences

chosen from an approved list

Major Requirements

  • 1. Lower-division requirements (84 units)

CHEM 01LB, CHEM 001C, CHEM 01LC

MATH 010A, MATH 010B, MATH 046

  • 2. Upper-division requirements (64 units)

MSE 135, MSE 143, MSE 146, MSE 160, MSE 161, MSE 175A, MSE 175B

  • c) Technical Electives (16 units):

Chosen from BIEN/MSE 136, BIEN 140A/ CEE 140A, BIEN 140B/CEE 140B, CHE 105, CHE 161, EE 133, EE 136, EE 137, EE 139, EE 162, ME 153, MSE 141, MSE 142, MSE 148, MSE 155, MSE 156, MSE 197

Visit the Student Affairs Office in the College of Engineering or student.engr.ucr.edu for a sample program.

Graduate Program

The Department of Materials Science and En- gineering offers programs leading to M.S. and Ph.D. degrees. Research focus areas currently include Materials Processing, Semiconduc- tor Materials, Materials Analysis, Nanoscale Materials, Bioinspired Materials, Ceramic Materials, Magnetic Materials and Materials for Spintronics.

Admission Applicants should have completed a program equivalent to UCR’s B.S. in Materials Science and Engineering, obtained a B.S. in a relat- ed discipline and demonstrated particular interest/aptitude for Materials Science and Engineering, or demonstrate the required knowledge and proficiency in the following subjects

  • 1. Fundamentals of Materials Science and

Engineering (equivalent to MSE 001)

  • 2. Fundamentals of Chemistry (equivalent to

Chem 001A & Chem 001B & Chem 001C)

  • 3. Fundamentals of Physics (equivalent to

Phys 040A & Phys 040B and Phys 040C)

  • 4. Fundamentals of Materials Synthesis or

Processing (for instance, equivalent to Chem 112A)

  • 5. Nanostructure Characterization or Mate-

rials Characterization (equivalent to MSE 160 or MSE 161).

Under special circumstances, students who have not completed all preparation course requirements may be admitted provided that the deficiencies are corrected within the first year of graduate study. Deficiencies limited to 12 units maximum. Courses taken for this purpose do not count towards an advanced degree.

All applicants must submit official scores. All applicants whose native language is not English and who do not have a degree from an institution where English is the exclusive language of instruction must complete the Test of English as a Foreign Language (TOEFL) with a minimum score of 550 (paper-based), 213 (com- puter-based), or 80 (Internet-based). UCR will accept scores from the Academic Modules of the International English Language Testing System IELTS, which is jointly managed by the British Council, | 447 IDP:IELTS Australia and the Univer- sity of Cambridge ESOL Examinations. The exam must be taken within two years of the time prior to enrollment at UCR. The minimum acceptable scores are: overall band score of 7 with no indi- vidual section score less than 6. Please request an official Test Report Form (TRF) of your IELTS. Remember to order the TRF from the test center where you took the test and ask the administra- tor to send the official TRF to:

Graduate Admissions Office Graduate Division University Office Building University of California, Riverside Riverside, CA 92521 USA

For more information about registering for this exam or to locate the office of any test center, consult the IELTS website.

Applicants must meet the general admission requirements of the Riverside Division of the Academic Senate and the UCR Graduate Coun- cil as set forth in the UC Riverside Graduate Student Application.

Master of Science

The Program of Materials Science and Engineering offers the M.S. degree in Materials Science and Engineering. Students may obtain an M.S. degree in Materials Science and Engineering through one of two plans: 1) Thesis or 2) Comprehensive Examination.

Plan I (Thesis) Students must complete 36 units of graduate or upper-division undergraduate course work, of which 24 must be graduate level units. Student must complete at least one course from 3 of the 5 areas of Materials Science and Engineering (MSE 201-209, 210-219, 220-229, 230-239, 240-249) as well as at least one unit of MSE 200 and at least five units of MSE 250. Students must enroll in MSE 200 the first time it is offered during their residency. At least two units of MSE 250- 259 must be taken for a letter grade. Students can take a maximum of 12 units in Graduate Research and a maximum 6 units in Direct- ed Studies. The course of study needs to be approved each quarter by the research advisor (when determined) and the MSE graduate advi- sor. The degree will be awarded when all these requirements are met and the thesis has been submitted successfully.

Plan II (Comprehensive Exam) All students must complete 36 units of graduate or upper division undergraduate courses, of which 18 units must be graduate level. Student must complete at least one course from each of the 5 areas of Materials Science and Engineer- ing (MSE 201-209, 210-219, 220-229, 230-39, 240-

  • 249) as well as at least one unit of MSE 200 and

at least four units of MSE 250. At least one unit of MSE 250-259 must be taken for a letter grade. None may be in graduate research (MSE 297 or MSE 299). A maximum of 6 units may be in Di- rected Studies. Students must enroll in MSE 200 the first time it is offered during their residency. The course of study needs to be approved each quarter by the MSE graduate advisor.

Students will take a written comprehensive examination conducted jointly with the Ph.D. preliminary examination. The examination emphasizes the fundamental knowledge of the study area rather than the specifics covered in individual courses.

Students concurrently enrolled in a Ph.D. program in another department must have their course of study approved by the Graduate Advisor. Coursework used to complete require- ments in a non-MSE Ph.D. program cannot be used towards the Master’s degree in MSE. An Oral Comprehensive Examination that measures the student’s breadth of knowledge in Materials Science and Engineering will be given after the appropriate course of study has been completed.

Normative Time to Degree Six quarters (two years)

Doctoral Degree

The Program of Materials Science and Engineering offers the Ph.D. degree in Materials Science and Engineering. Admission In addition to the requirements set forth for a M.S. degree, applicants should demonstrate exceptional achievement that clearly indicates their ability to conduct Ph.D. level studies.

Course Work There is no comprehensive course require- ment for the Ph.D. degree; only a few courses are mandatory. The faculty recommends that the student take a minimum of 36 units of graduate or upper-division undergraduate course work covering all five areas of study in Materials Science and Engineering: Ther- modynamic Foundation of Materials, Crystal Structure and Bonding, Materials Characteriza- tion Techniques, Functional Materials, and Ma- terials Synthesis and Processing (MSE 201-MSE 209, MSE 210-MSE 219, MSE 220-MSE 229, MSE 230-MSE 239, MSE 240-MSE 249). Students must enroll in MSE 200 the first time it is offered during their residency. Students must enroll in MSE 250 during all quarters of residency and must obtain a letter grade in an MSE 250-MSE 259 course once during each academic year of residency except for the first one.

The courses may include graduate course work used for the M.S. degree. The course of study needs to be approved each quarter by the research advisor (when determined) and the MSE graduate advisor. Students may need to take considerably more than the courses indicated above to prepare for and conduct their Ph.D. research.

Preliminary Examination The purpose of the preliminary examination is to screen candidates for continuation in the doc- toral program. The examination is administered by the graduate program committee jointly with the M.S. comprehensive examination. Candidates must solve at least one problem in each of the five areas of study in Material Science and Engineering. Plan II M.S. candidates who took the combined M.S. comprehensive and Ph.D. prelimi- nary examination and successfully passed at the Ph.D. level are given credit for having passed the Ph.D. preliminary examination.

Dissertation Proposal and Oral Qualifying Examination After passing the preliminary examination at the Ph.D. level, doctoral candidates must prepare and submit a dissertation proposal to their qualifying examination committee at least one month before the qualifying exam- ination. The format of the proposal is flexible, but the proposal should clearly indicate the proposed problem under study, demonstrate substantial knowledge of the topic and related issues, state the progress made towards a solution, and indicate the work remaining to be done. The new approaches and methods to be used in the research should also be discussed. An extensive bibliography for the problem under study should be attached to the proposal. Within one week after submis- sion, the student is informed whether the pro- posal meets these standards and the student is permitted to proceed to the oral exam.

The oral qualifying examination focuses on the dissertation problem. It includes considerable depth in the student’s area of specialization, as required for a successful completion of the dissertation. The examination is a three- hour session, which begins with the student’s presentation of the dissertation topic and is followed with questions and suggestions by the doctoral committee.

Dissertation Examination and Defense A doctoral dissertation should be an original and substantial contribution to knowledge in the student’s major field. The dissertation must demonstrate the student’s ability to carry out a program of independent advanced research and to report the results in accordance with standards observed in recognized scientific journals. When the doctoral committee determines that a suit- able draft of the dissertation has been presented, a dissertation examination and defense for the student is scheduled. The defense consists of a public seminar followed by questions from the committee members and the audience.

Normative Time to Degree 12 quarters (15 quarters for students without an M.S. in Materials Science and Engineering)

Preparation for Careers in Teaching All doctoral students are encouraged to serve as teaching assistants for at least three quar- ters during their graduate career. The program offers a Teaching Practicum in Materials Sci- ence and Engineering (MSE 302).

Dissertation Examination and Defense Contact the Graduate Student Affairs Assistant at the Department of Materials Science and Engineering, (951) 827-3383, or visit mse.ucr.edu for information on graduate courses.

Courses