Walter de Heer

Walter de Heer's profile picture
eheer@physics.gatech.edu

Walter Alexander “Walt” de Heer is a Dutch physicist and nanoscience researcher known for discoveries in the electronic shell structure of metal clusters, magnetism in transition metal clusters, field emission and ballistic conduction in carbon nanotubes, and graphene-based electronics.

De Heer earned a doctoral degree in Physics from the University of California, Berkeley in 1986 under the supervision of Walter D. Knight. He worked at the École Polytechnique Fédérale de Lausanne in Switzerland from 1987 to 1997, and is currently a Regents' Professor of Physics at the Georgia Institute of Technology. He directs the Epitaxial Graphene Laboratory in the School of Physics and leads the Epitaxial Graphene Interdisciplinary Research Group at the Georgia Tech Materials Research Science and Engineering Center.

Regents' Professor, School of Physics
Phone
(404) 894-7879
Additional Research

Electronics; Carbon Nanotubes; Epitaxial Growth; Graphene; Nanomaterials; quantum materials

IRI/Group and Role
Energy > Research Community
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Sciences > School of Physics
Research Areas
Matter and Systems
  • Computing and Communication Technologies
Energy
  • Advanced Manufacturing for Energy
  • Energy Systems, Grid Resilience, and Cybersecurity

Dragomir Davidovic

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dragomir.davidovic@physics.gatech.edu

Dragomir Davidovic's research focuses on the exploration of physical properties that emerge in objects when their size approaches nanometer-scale. The objects of study are metallic or insulating particles, molecules, atomic-scale diameter wires, and droplets of one phase surrounded by another phase. Recent advances in lithography enable attachment of these objects to larger scale conducting electrodes, making it possible to explore their physical properties by electronic transport. The properties of nanoscale objects can be fundamentally different from those in bulk. As an example, whereas in bulk metals, the energy spectrum of conduction electrons is continuous, in metallic nanoparticles the spectrum is discrete. As a result, metallic nanoparticles are more like atoms than bulk metals, and nanoparticles are commonly referred to as artificial atoms.

Associate Professor, School of Physics
Director, Mesoscopic and Nano Physics Laboratory
Phone
404.385.1284
Office
Howey N115
Additional Research

Electron Microscopy; Ferroelectronic Materials; Nanomaterials

IRI/Group and Role
Energy > Research Community
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Sciences > School of Physics
Research Areas
Energy
  • Advanced Manufacturing for Energy

Suman Das

Suman Das's profile picture
suman.das@me.gatech.edu
Morris M. Bryan, Jr. Chair and Professor, Woodruff School of Mechanical Engineering
Director, Direct Digital Manufacturing Laboratory
Phone
404.385.6027
Office
MARC 255
Additional Research

3D printing; Additive/Advanced Manufacturing; Biomaterials; Composites; Emerging Technologies; Nanocomposites; Nanomanufacturing; Manufacturing, Mechanics of Materials, Bioengineering, and Micro and Nano Engineering. Advanced manufacturing and materials processing of metallic, polymeric, ceramic, and composite materials for applications in life sciences, propulsion, and energy. Professor Das directs the Direct Digital Manufacturing Laboratory and Research Group at Georgia Tech. His research interests encompass a broad variety of interdisciplinary topics under the overall framework of advanced design, prototyping, direct digital manufacturing, and materials processing particularly to address emerging research issues in life sciences, propulsion, and energy. His ultIMaTe objectives are to investigate the science and design of innovative processing techniques for advanced materials and to invent new manufacturing methods for fabricating devices with unprecedented functionality that can yield dramatic improvements in performance, properties and costs.

IRI/Group and Role
Bioengineering and Bioscience > Faculty
Energy > Research Community
Manufacturing
Bioengineering and Bioscience
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Engineering > Woodruff School of Mechanical Engineering

Scott Danielsen

Scott Danielsen's profile picture
scott.danielsen@mse.gatech.edu

Scott Danielsen is an Assistant Professor in the School of Materials Science and Engineering at the Georgia Institute of Technology. He obtained his Ph.D. in chemical engineering at the University of California, Santa Barbara in 2018 and his B.S.E. in chemical and biomolecular engineering at the University of Pennsylvania in 2014. He then spent five years as a postdoctoral associate at Duke University and as a visiting scholar at the University of North Carolina School of Medicine from 2019-2023. 

Prof. Danielsen’s group uses a combination of theoretical, computational, and experimental methods to reveal structure–property–processing relationships of soft materials. Their current primary research interests are the structure and dynamics of nonideal structured fluids, particularly polymer gels and biological fluids, with a focus on designing new materials and processing conditions for functional materials.

Assistant Professor, School of Materials Science and Engineering
IRI/Group and Role
Bioengineering and Bioscience > Faculty
Bioengineering and Bioscience
Matter and Systems > Affiliated Faculty
Energy > Research Community
Energy > Faculty
Research Areas
Matter and Systems
  • Computing and Communication Technologies
Energy
  • Energy Storage
  • Water, Wind, and Solar
  • Fuels
  • Critical Minerals
Renewable Bioproducts
  • Center for a Renewables-Based Economy from Wood (ReWOOD)
  • Circular Materials

Sheng Dai

Sheng Dai's profile picture
sheng.dai@ce.gatech.edu

Sheng Dai, Ph.D., P.E., earned his degrees from Tongji University and Georgia Tech. He worked as an ORISE postdoc at the National Energy Technology Laboratory of the U.S. Department of Energy, and returned to Georgia Tech as a faculty member in 2015. He is currently an associate professor in the School of Civil and Environmental Engineering, Ocean Science and Engineering. and holds a courtesy appointment at the School of Earth and Atmospheric Sciences at Georgia Tech.

Dr. Dai's group addresses emerging energy and environment challenges through studying subsurface geomechanics, geomaterials characterization, energy geotechnics, bio-inspired geotechnics, flow in porous media, and granular dynamics. His research has been funded by federal funding agencies (DOE, NSF, NASA, DOT), national labs (INL, NETL), and industry (AECOM, GTI, Leidos).  Dr. Dai has been recognized for his research and teaching, including being a recipient of the NSF CAREER award, the ORISE Fellowship, the Bill Schutz Junior Faculty Teaching Award, and the Class of 1969 Teaching Fellows at Georgia Tech.

He is an associated editor of the Journal of Geophysical Research: Solid Earth and Advances in Geo-Energy Research, an editorial advisor of Geomechanics for Energy and Environment, and serves on the Pressure Core Advisory Board for U.S. Geological Survey, the GOM2 Marine Test Technical Advisory Committee for UT/DOE, the National Gas Hydrate Program for NETL, and the Task Force Leader of TC308 Energy Geotechnics of ISSMGE. 

Assistant Professor, School of Civil and Environmental Engineering
Phone
(404)385-4757
Additional Research

Oil/Gas; Combustion; Electronics; Energy Harvesting; Energy Storage; Thermal Systems

IRI/Group and Role
Bioengineering and Bioscience > Faculty
Energy > Hydrogen Group
Energy > Research Community
Bioengineering and Bioscience
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Engineering
Research Areas
Energy
  • Energy Storage
  • Fuels
  • Carbon Capture, Utilization and Storage
  • Sustainable Communities
  • Critical Minerals

Constance Crozier

Constance Crozier's profile picture
constance.crozier@isye.gatech.edu

I am an Assistant Professor at Georgia Tech ISyE. My research concerns the control and operation of decarbonized power systems, particularly with the integration of flexible loads such as electric vehicles. I got my Ph.D. from the University of Oxford in the Energy and Power Group, and completed my postdoc in the GRIFFIN Lab at CU Boulder.

Assistant Professor, School of Industrial Systems Engineering
Additional Research

Power systems and Electric vehicles

IRI/Group and Role
Sustainable Systems > Fellow
Energy > Research Community
Sustainable Systems
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Engineering > School of Industrial Systems Engineering
Research Areas
Sustainable Systems
  • Resource and Materials Use
Energy
  • Electric Vehicles

Juan-Pablo Correa-Baena

Juan-Pablo Correa-Baena's profile picture
jpcorrea@gatech.edu

Juan-Pablo Correa-Baena is an Assistant Professor and the Goizueta Junior Faculty Rotating Chair in the School of Materials Science and Engineering at the Georgia Institute of Technology in Atlanta, USA.

His group focuses on understanding and control of crystallographic structure and effects on electronic dynamics at the nanoscale of low-cost semiconductors for optoelectronic applications. Juan-Pablo’s group works on advanced deposition techniques, with emphasis on low-cost and high throughput, as well as advanced characterization methods that include synchrotron-based mapping and imaging approaches with nanoscale resolution.

His research program at Georgia Tech has attracted funding from the Department of Energy and the Department of Defense, which funds cutting-edge research on new materials for solar energy conversion.

His work has been cited over 28,000 times (h-index of 59) making him a top cited researcher as recognized by the Web of Science Group, Highly Cited Researchers-cross-field (2019, 2021) and Chemistry (2020), and Nature Index, Leading early career researcher in materials science (2019).

Associate Professor, Materials Science and Engineering
IMS/SEI Initiative Lead: Materials for Solar Energy Harvesting and Conversion
IMS/SEI Initiative Lead: Materials for Solar Energy Harvesting and Conversion
IRI/Group and Role
Energy > Faculty Council
Energy > Initiative Leads
Energy > Research Community
Matter and Systems > Affiliated Faculty
University, College, and School/Department
Georgia Institute of Technology > College of Engineering
Research Areas
Matter and Systems
  • Built Environment Technologies
  • Human-Centric Technologies
Energy
  • Water, Wind, and Solar
  • Advanced Manufacturing for Energy

Edward Conrad

Edward Conrad's profile picture
edward.conrad@physics.gatech.edu
Professor Emeritus, School of Physics
Phone
(404) 894-9086
Additional Research

Electronics

IRI/Group and Role
Energy > Research Community
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Sciences > School of Physics

Thomas Conte

Thomas Conte's profile picture
conte@gatech.edu

Tom Conte holds a joint appointment in the Schools of Electrical & Computer Engineering and Computer Science at the Georgia Institute of Technology. He is the founding director of the Center for Research into Novel Computing Hierarchies (CRNCH). His research is in the areas of computer architecture and compiler optimization, with emphasis on manycore architectures, microprocessor architectures, back-end compiler code generation, architectural performance evaluation and embedded computer system architectures.

Professor, School of Electrical & Computer Engineering and School of Computer Science
Phone
(404) 385-7657
Office
Klaus 2334
Additional Research

Computer Architecture; Compiler Optimization

IRI/Group and Role
Data Engineering and Science > Affiliated Faculty
Energy > Research Community
Data Engineering and Science
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Computing > School of Computer Science
Georgia Institute of Technology > College of Engineering > School of Electrical and Computer Engineering
Research Areas
Artificial Intelligence
Energy
  • Energy Systems, Grid Resilience, and Cybersecurity

Baratunde (Bara) Cola

Baratunde (Bara) Cola's profile picture
baratunde.cola@me.gatech.edu

Baratunde A. Cola is a professor in the George W. Woodruff School of Mechanical Engineering and the School of Materials Science and Engineering at the Georgia Institute of Technology. He received his degrees from Vanderbilt University and Purdue University, all in mechanical engineering, and was a starting fullback on the Vanderbilt football team as an undergrad. Cola has received a number of prestigious early career research awards including the Presidential Early Career Award for Scientist and Engineers (PECASE) in 2012 from President Obama for his work in nanotechnology, energy, and outreach to high school art and science teachers and students; the AAAS Early Career Award for Public Engagement with Science in 2013; and the 2015 Bergles-Rohsenow Young Investigator Award in Heat Transfer from the American Society of Mechanical Engineers. In addition to research and teaching, Cola is the founder and CEO of Carbice Corporation, which sells a leading thermal management solution for the global electronics industry.

Professor, Woodruff School of Mechanical Engineering
Phone
404.385.8652
Office
Love 316
Additional Research

Carbon Nanotubes; Electronic Materials; Heat Transfer; Integrated Photonics; Nanoelectronics

IRI/Group and Role
Energy > Research Community
Energy
University, College, and School/Department
Georgia Institute of Technology > College of Engineering > Woodruff School of Mechanical Engineering
Research Areas
Energy
  • Advanced Manufacturing for Energy
  • Energy Storage
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