Faisal Alamgir

Faisal Alamgir's profile picture
faisal.alamgir@mse.gatech.edu
Professor, School of Materials Science and Engineering
Initiative Lead, Advanced Real-time Materials Characterization
Phone
404.385.3263
Office
Love 373
Additional Research

Energy Conversion, energy storage, nanomaterials, optical materials, photovoltaics, catalysis, electrical grid, energy storage

Google Scholar
https://scholar.google.com/citations?hl=en&user=CT721oIAAAAJ&view_op=list_works&sortby=pubdate

Andrei Fedorov

Andrei Fedorov's profile picture
AGF@gatech.edu

Fedorov's background is in thermal/fluid sciences, chemical reaction engineering as well as in applied mathematics. His laboratory works at the intersection between mechanical and chemical engineering and solid state physics and analytical chemistry with the focus on portable/ distributed power generation with synergetic CO2 capture; thermal management of high power dissipation devices and electronics cooling; special surfaces and nanostructured interfaces for catalysis, heat and moisture management; and development of novel bioanalytical instrumentation and chemical sensors. Fedorov joined Georgia Tech in 2000 as an assistant professor after finishing his postdoctoral work at Purdue University.

Professor and Rae S. and Frank H. Neely Chair, Woodruff School Mechanical Engineering
Associate Chair for Graduate Studies, School Mechanical Engineering
Director, Fedorov Lab
Phone
404.385.1356
Office
Love 307
Additional Research

Heat Transfer; power generation; CO2 Capture; Catalysis; fuel cells; "Fedorov's research is at the interface of basic sciences and engineering. His research portfolio is diverse, covering the areas of portable/ distributed power generation with synergetic carbon dioxide management, including hydrogen/CO2 separation/capture and energy storage, novel approaches to nanomanufacturing (see Figure), microdevices (MEMS) and instrumentation for biomedical research, and thermal management of high performance electronics. Fedorov's research includes experimental and theoretical components, as he seeks to develop innovative design solutions for the engineering systems whose optimal operation and enhanced functionality require fundamental understanding of thermal/fluid sciences. Applications of Fedorov's research range from fuel reformation and hydrogen generation for fuel cells to cooling of computer chips, from lab-on-a-chip microarrays for high throughput biomedical analysis to mechanosensing and biochemical imaging of biological membranes on nanoscale. The graduate and undergraduate students working with Fedorov's lab have a unique opportunity to develop skills in a number of disciplines in addition to traditional thermal/fluid sciences because of the highly interdisciplinary nature of their thesis research. Most students take courses and perform experimental and theoretical research in chemical engineering and applied physics. Acquired knowledge and skills are essential to starting and developing a successful career in academia as well as in many industries ranging from automotive, petrochemical and manufacturing to electronics to bioanalytical instrumentation and MEMS."

Google Scholar
https://scholar.google.com/citations?hl=en&user=_X-PrRkAAAAJ&view_op=list_works&sortby=pubdate

Andrew Medford

Andrew Medford's profile picture
andrew.medford@chbe.gatech.edu

Dr. Medford is interested in leveraging materials informatics, statistics, and machine learning to maximize the practical impact of fundamental atomic-scale simulations in the field of surface science and catalysis. His research areas include heterogeneous catalysis, oxide surface chemistry, density functional theory, kinetic models, uncertainty quantification, and Bayesian optimization and inference.

Assistant Professor, School of Chemical and Biomolecular Engineering
Phone
(404) 385-5531
Additional Research
  • Catalysis
  • Biochemicals
  • Biorefining
  • Chemistry
  • Sugars
  • Molecular Simulations
  • Computational Biology

Valerie Thomas

Valerie Thomas's profile picture
valerie.thomas@isye.gatech.edu

Valerie Thomas is the Anderson-Interface Chair of Natural Systems and Professor in the H. Milton School of Industrial and Systems Engineering, with a joint appointment in the School of Public Policy. 

Dr. Thomas's research interests are energy and materials efficiency, sustainability, industrial ecology, technology assessment, international security, and science and technology policy. Current research projects include low carbon transportation fuels, carbon capture, building construction, and electricity system development. Dr. Thomas is a Fellow of the American Association for the Advancement of Science, and of the American Physical Society. She has been an American Physical Society Congressional Science Fellow, a Member of the U.S. EPA Science Advisory Board, and a Member of the USDA/DOE Biomass Research and Development Technical Advisory Committee. 

She has worked at Princeton University in the Princeton Environmental Institute and in the Center for Energy and Environmental Studies, and at Carnegie Mellon University in the Department of Engineering and Public Policy.

Dr. Thomas received a B. A. in physics from Swarthmore College and a Ph.D. in theoretical physics from Cornell University.

Anderson-Interface Chair of Natural Systems
Professor, School of Industrial and Systems Engineering
RBI Initiative Lead: Sustainability Analysis
Phone
(404) 894-0390
Additional Research

Hydrogen Transport/Storage; Biofuels; ClIMaTe/Environment; Electric Vehicles; System Design & Optimization; Energy and Materials Efficiency; Sustainability; Industrial Ecology; Technology Assessment; Science and Technology Policy

Seung Soon Jang

Seung Soon Jang's profile picture
SeungSoon@mse.gatech.edu

Seung Soon Jang joined the School of Materials Science and Engineering at the Georgia Institute of Technology in July 2007. Jang worked at Samsung Electronics and the Materials and Process Simulation Center (MSC) at CalTech performing various researches in nanoelectronics, fuel cell, and interfacial systems as a director of Supramolecular Technology for six years.

His research interest includes computations and theories to characterize and design nanoscale systems based on the molecular architecture-property relationship, which are especially relevant to molecular electronics, molecular machines, fuel cell technology and biotechnology.

Professor, School of Materials Science and Engineering
Director, Computational NanoBio Technology Lab
Phone
404.385.3356
Office
Love 351
Additional Research

Jang's research interest is to characterize and design nanoscale systems based on the molecular architecture-property relationship using computations and theories, which are especially relevant to designing new biomaterials for drug delivery and tissue engineering. Currently, he is focusing on 1) NanoBio-mechanics for DNA, lipid bilayer, and hydrogel systems; 2) Molecular interaction of Alzheimer proteins with various small molecules. Dr. Jang is also interested in various topics such as nanoelectronics, nanostructured energy technologies for fuel cell, battery and photovoltaic devices.;Computational mechanics; Nanostructured Materials; Polymeric composites; Biomaterials; Fuel Cells; Delivery and Storage

Google Scholar
https://scholar.google.com/citations?hl=en&user=SW0u-asAAAAJ&view_op=list_works&sortby=pubdate

Timothy Charles Lieuwen

Timothy Charles Lieuwen's profile picture
tim.lieuwen@aerospace.gatech.edu

Tim Lieuwen is the executive vice president for Research at the Georgia Institute of Technology. In this role, he oversees the Institute’s $1.4+ billion portfolio of research, economic development, and sponsored activities. This includes leadership of the Georgia Tech Research Institute (GTRI), the Enterprise Innovation Institute, 11 interdisciplinary research institutes (IRIs), and related research administrative support units.

In his 25-plus years at Georgia Tech, Lieuwen earned his master’s and Ph.D. degrees in mechanical engineering (1996 and 1999, respectively) and has held multiple leadership positions. He has been the executive director of the Strategic Energy Institute (SEI) and served as the interim chair of the Daniel Guggenheim School of Aerospace Engineering in 2023.

Lieuwen has received numerous honors and recognition for his work in clean energy systems and policy, national security, and regional economic development. Additionally, he has been awarded the titles of Regents’ Professor and the David S. Lewis, Jr. Chair in AE. He is also a member of the National Academy of Engineering and is a fellow of the American Society of Mechanical Engineers and the American Institute of Aeronautics and Astronautics.

Executive Vice President for Research (EVPR)
Regents' Professor, Guggenheim School of Aerospace Engineering
Phone
(404) 894-8885
Office
Carnegie 020
Additional Research

Acoustics; Fluid Mechanics; Combustion; Signal Processing

Vigor Yang

Vigor Yang's profile picture
vigor.yang@aerospace.gatech.edu

Vigor Yang earned his Ph.D. from the California Institute of Technology in 1984. After serving for one year as a research fellow in Jet Propulsion at Caltech, he joined the Pennsylvania State University in August 1985, becoming the John L. and Genevieve H. McCain Chair in Engineering in 2006. In 2009, he began his tenure as the William R.T. Oakes Professor Chair at the Daniel Guggenheim School of Aerospace Engineering at the Georgia Tech. He retired from the chair position and returned to teaching and research in August of 2018

Yang’s research encompasses a wide spectrum of topics, including (1) data-enabled design and data science; (2) combustion dynamics in propulsion and power-generation systems;(3) multi-fidelity modeling and simulations of fluid flows and combustion; (4) combustion of energetic materials; (5) high-pressure transport phenomena, thermodynamics and combustion, and (6) nano technologies for propulsion and energetic applications. He has established, as the principal or co-principal investigator, more than 70 research projects, including nine (9) DoD-MURI projects. He has published 10 comprehensive volumes and numerous technical papers on combustion, propulsion, energetics, and data science. He was the recipient of  the Air-Breathing Propulsion Award (2005), the Pendray Aerospace Literature Award (2008), the Propellants and Combustion Award (2009), and the von Karman Lectureship in Astronautics Award (2016) from the American Institute of Aeronautics and Astronautics (AIAA); the Worcester Reed Warner Medal (2014) from the American Society of Mechanical Engineers (ASME); and the Lifetime Achievement Award (2014) from the Joint Army, Navy, NASA, and Air Force (JANNAF) Interagency Propulsion Committee.

Yang was the editor-in-chief of the AIAA Journal of Propulsion and Power (2001-2009) and the JANNAF Journal of Propulsion and Energetics (2009-2012). He is currently a co-editor of the Aerospace Book Series of the Cambridge University Press (2010-).  He serves, or has served, on a large number of steering committees and review/advisory boards for government agencies and universities in the U.S. and abroad. A member of the U.S. National Academy of Engineering and an academician of Academia Sinica, Dr. Yang is a fellow of the AIAA, ASME, and Royal Aeronautical Society (RAeS).

Regents Professor
Additional Research
  • Combustion
  • Energy
  • Hydrogen Production &  Utilization 

Thomas Fuller

Thomas Fuller's profile picture
tom.fuller@chbe.gatech.edu

Tom Fuller is Professor of Chemical Engineering at the Georgia Tech. Dr. Fuller received a BS from the University of Utah in Chemical Engineering in 1982. Dr. Fuller then served for five years in the U.S. Navy working as a Nuclear Engineer. In 1992 he obtained a Ph.D. from UC, Berkeley also in Chemical Engineering. 

Subsequently, Dr. Fuller developed advanced lithium batteries while working as a postdoctoral fellow at Lawrence Berkeley National Laboratory. He then moved to United Technologies. He was responsible for technology development, design, assembly, and test of cell stacks for UTC Fuel Cells. 

His research group at Georgia Tech is focused on durability challenges for electrochemical systems. For the last eight years Dr. Fuller has been a Technical Editor for the Journal of the Electrochemical Society. In 2009 Dr. Fuller was named a Fellow of the Electrochemical Society.

Professor, School of Chemical and Biomolecular Engineering
Phone
(404) 894-2898
Additional Research

Electric Vehicles; Energy Storage; Hydrogen; Modeling; Materials Failure and Reliability; Energy Conversion; Energy Storage; Batteries; fuel cells

University, College, and School/Department
Google Scholar
https://scholar.google.com/citations?hl=en&user=I1RqBRoAAAAJ&view_op=list_works&sortby=pubdate

Comas Haynes

Comas Haynes's profile picture
comas.haynes@gtri.gatech.edu
Principal Research Engineer, Georgia Tech Research Institute
SEI Lead: Hydrogen
Phone
(404) 407-7578
Additional Research

Building Technologies; System Design & Optimization; Thermal Systems

GTRI
Geogia Tech Research Institute

Scott McWhorter

Scott McWhorter's profile picture
cmcwhorter7@gatech.edu

Dr. Christopher “Scott” McWhorter is Lead for Federal Energy Strategy and National Laboratory Partnerships and a Senior Research Engineer within the Strategic Energy Institute (SEI) at the Georgia Institute of Technology. In this role, he leads Georgia Tech’s federal energy strategy, national laboratory engagement, and large-scale interdisciplinary research development efforts, helping position the Institute to compete for transformative federal research investments across the U.S. Department of Energy (DOE), Department of Defense (DOD), National Science Foundation (NSF), Department of Commerce, and other federal agencies. He works closely with faculty, industry, national laboratories, and government stakeholders to develop strategic partnerships, advance technology commercialization, and expand Georgia Tech’s research portfolio in energy, manufacturing, critical minerals, artificial intelligence, and national security. 

Dr. McWhorter brings more than twenty-five years of experience spanning national laboratories, federal government, academia, and technology startups. His technical expertise encompasses hydrogen and fuel cell technologies, advanced energy storage materials, critical minerals and supply chains, grid modernization, advanced manufacturing, sensors and spectroscopy, technology commercialization, and strategic energy policy. Throughout his career, he has led the development and management of multidisciplinary research programs valued at hundreds of millions of dollars while helping organizations secure more than $750 million in competitive federal funding. 

At Georgia Tech, Dr. McWhorter has played a leading role in developing major institutional initiatives focused on hydrogen, critical minerals, advanced manufacturing, artificial intelligence, and federal research partnerships. He serves as Co-Principal Investigator on a $20 million Department of Defense program focused on the manufacturing science of galvanic aluminum-based hydrogen generation technologies and has led numerous efforts to connect Georgia Tech researchers with federal agencies, national laboratories, industry partners, and regional innovation ecosystems. He previously served as Interim Managing Director of the Georgia Artificial Intelligence in Manufacturing (Georgia AIM) initiative and Interim Executive Director of the Georgia Tech Manufacturing 4.0 Consortium, where he expanded industry engagement and strengthened partnerships across the manufacturing sector. 

Prior to joining Georgia Tech, Dr. McWhorter served in multiple executive and scientific leadership roles at the Savannah River National Laboratory (SRNL), including Director of Strategic Programs, Division Director for Energy Science and Technology, Director of the Laboratory Directed Research and Development (LDRD) Program, and Senior Advisory Scientist. He managed research portfolios exceeding $75 million annually and led multidisciplinary organizations of more than 65 scientists, engineers, and technical staff. During his tenure, he significantly expanded SRNL’s clean energy research portfolio, helped establish the laboratory’s Advanced Manufacturing Collaborative, and played a central role in the formation of several Manufacturing USA institutes, including the RAPID Manufacturing Institute and CESMII Smart Manufacturing Institute. 

Dr. McWhorter served as a Science and Clean Energy Technical Advisor for the Hydrogen Storage Program at the U.S. Department of Energy’s Hydrogen and Fuel Cell Technologies Office. In that role, he provided technical leadership for a research portfolio exceeding $20 million annually, contributed to national hydrogen storage strategies and performance targets, guided funding opportunity development, and supported the advancement of next-generation hydrogen storage technologies. His work helped shape DOE research priorities that continue to influence the commercialization of hydrogen and fuel cell systems today. 

Dr. McWhorter’s research contributions span hydrogen storage materials, advanced energy systems, critical minerals recovery, spectroscopy and sensing technologies, advanced materials characterization, and microfluidic systems. He has authored numerous peer-reviewed publications, technical reports, invited chapters, and patents, including foundational contributions to hydrogen storage technologies, energy systems analysis, optical sensing platforms, and advanced materials processing. His recent work has focused on critical minerals recovery from mining and industrial waste streams, domestic supply chain resilience, and the integration of advanced manufacturing and artificial intelligence technologies to strengthen U.S. energy and industrial competitiveness. 

In addition to his research and leadership activities, Dr. McWhorter is a recognized national leader in hydrogen and clean energy deployment. He serves as Chairman of the Board of the Southeast Hydrogen Energy Alliance (SHEA), where he has helped build one of the nation’s largest regional hydrogen stakeholder networks and advance strategies supporting hydrogen infrastructure, workforce development, and commercialization across the Southeastern United States. He also serves on numerous advisory boards and technical review panels for federal agencies, manufacturing institutes, universities, and industry organizations. 

Dr. McWhorter earned a Ph.D. in Analytical Chemistry from Louisiana State University and completed an ORISE Postdoctoral Fellowship at the Savannah River National Laboratory. Throughout his career, he has been recognized for excellence in research leadership, business development, technology transfer, and strategic program development, receiving multiple laboratory and national awards for advancing clean energy innovation and commercialization. His work continues to focus on accelerating the development and deployment of technologies that strengthen U.S. energy security, manufacturing competitiveness, and economic prosperity. Selected Recent Publications: 1. Tang, Y.; McWhorter, S. Kaolin Tailings Are Georgia's Hidden Gateway to Critical Minerals in AI Era. Atlanta Journal-Constitution, December 19, 2025. https://www.ajc.com/opinion/2025/12/kaolin-tailings-are-georgias-hidden-gateway-to-critical-minerals-in-ai-era/ (accessed 2026-06-01). 2. Tang, Y. and McWhorter, S. "How the US Can Mine Its Own Critical Minerals — without Digging New Holes." The Conversation, 30 July 2025, https://theconversation.com/how-the-us-can-mine-its-own-critical-minerals-without-digging-new-holes-252609. 3. Grady, C., McWhorter, S., Sulic, M., Sprik, S.J., Thorton, M.J., Brooks, K.P., Tamburello, D.A., Design Tool for Estimating Adsorbent Hydrogen Storage System Characteristics for Light-Duty Fuel Cell Vehicles. Int. J. Hydrogen Energy, 47, 29847, 2022. 4. Zidan, R., McWhorter, S., Enabling a Flexible Grid with Increased Penetration of DER: Techno-economic Analysis of Metal Hydride Thermochemical Energy Storage Integrated with Stirling Engine for Grid Energy Storage Applications. United States: N. p., 2020. Web. doi:10.2172/1632839.

Lead, Federal Opportunities and Strategy
IRI And Role