Home of UT
Materials Science and
Engineering
Core Faculty
TMI's core faculty lead cutting-edge research by running their grants through the institute, fostering collaboration and resource sharing.
Learn More
Graduate Program
Our Materials Science and Engineering program is one of the best in the nation, and our graduates go on to be leaders in their fields.
Learn More
Research
TMI supports interdisciplinary research at UT Austin, with over 100 faculty focusing on clean energy, nanotechnology, and advanced materials using our state-of-the-art facilities.
Learn More
Home
Delia Milliron receives 2023 Materials Research Society (MRS) Medal Award
Delia Milliron, the Ernest Cockrell, Sr. Chair #1 in engineering and department chair in chemical engineering, has received the Materials Research Society’s 2023 MRS Medal, which recognizes an exceptional achievement in materials research, or a specific outstanding recent discovery or advancement, that is expected to have a major impact on the progress of a materials‐related field.
Laser Technology Cools the Way for Cellular Surgery and Drug Delivery
Imagine a laser so gentle it can cradle nanoparticles, biological cells, and even drive drug-delivering microscopic vehicles to sick cells without causing harm. This isn't science fiction; it's a new innovation led by a team of scientists at The University of Texas at Austin.
Optica Announces 2024 Fellows Class, Dr. Yuebing Zheng
The Board of Directors of Optica (formerly OSA), Advancing Optics and Photonics Worldwide, recently elected 129 members from 26 countries to the Society's 2024 Fellow Class. Among those 129 members, our very own Materials Science & Engineering graduate advisor and Associate Professor in the Walker Department of Mechanical Engineering, Dr. Yuebing Zheng was selected.
Swarming Behavior, Inspired by Nature, Holds Key to Future Robotics and Optoelectronics
Researchers at The University of Texas at Austin have put forth a pioneering concept and working mechanism for generating reconfigurable multi-modal micromotor swarms, providing unprecedented spatial, temporal, and mode control compared to previous endeavors.
Page 27 of 34
Texas Materials Seminar Series
The Texas Materials Seminar Series features MSE 397 Seminars, TMI Distinguished Lectureships, and TMI Special Seminars, where leading faculty and professionals from around the world share cutting-edge innovations and advancements in materials engineering with our students.
Learn More
News
Koo Research Group Presents at AIAA SciTech 2025 Conference
Three graduate students from the Koo Research Group presented five papers at the AIAA SciTech Conference in Orlando, Florida. Topics included advanced aerospace materials like carbon/UHTR and quartz/UHTR ablatives, microstructural analysis, and photogrammetry methods. The students, along with their advisor Dr. Joseph H. Koo, showcased their research to over 6,000 attendees.
A New Structure for Single Atom Catalysis
A recent study by Dr. Yuanyue Liu and his team, published in The American Chemical Society (ACS), has revealed a previously overlooked catalytic site in M–N–C materials, which are vital for energy conversion reactions like the oxygen reduction reaction (ORR). Traditionally, M–N–C catalysts feature pyridinic sites as the primary active sites.
Dr. Yuebing Zheng Elected Fellow of SPIE
SPIE, the international society for optics and photonics, is proud to announce that Dr. Yuebing Zheng has been elected to the prestigious grade of Fellow of SPIE, in recognition of his outstanding contributions to the field of optics and photonics.
Advancements in Anode-Free Solid-State Batteries
Dr. David Mitlin and Dr. Donald Siegel, along with their colleagues in the Department of Energy’s MUSIC Energy Frontier Research Center, recently published a perspective article in Nature Materials on "Electro-Chemo-Mechanics of Anode-Free Solid-State Batteries."
In2Se3: A New Material for Enhancing AI Performance
In a recent groundbreaking study, Dr. Yurim Jeon, a postdoctoral researcher, and Dr. Deji Akinwande, a distinguished professor, have uncovered In2Se3’s potential to significantly advance artificial intelligence (AI).
$12M+
In Grant Funding
20+
Research Patents
10K+