Julia Yang

Portrait of Julia Yang
jhyang@gatech.edu

Julia Yang, Ph.D. is an Assistant Professor in the School of Chemical and Biomolecular Engineering at Georgia Tech. Her research has enabled fundamental understanding of battery materials by advancing computational approaches to resolve transport in disordered electrodes and explain reactivity in organic electrolytes. She is a co-author on more than 14 publications and four patents, a recipient of the Harvard University Center for the Environment Fellowship (2022-2024), and a NextProf Nexus alum (2023). She is deeply committed to educating the next generation of diverse minds by prioritizing equity, inclusivity, and belonging, starting from within the classroom and beyond. 

Prof. Yang received her B.S. in Materials Science and Engineering, with an additional major in Physics, from Carnegie Mellon University and her Ph.D. in Materials Science and Engineering from U.C. Berkeley as an NDSEG Fellow under the guidance of Prof. Gerbrand Ceder. During her graduate studies, she was an AI Resident with X, the Moonshot Factory. She led postdoctoral work at Harvard University as an Environmental Fellow working with Prof. Boris Kozinsky and collaborating with Prof. Ah-Hyung Alissa Park. 

Assistant Professor, School of Chemical and Biomolecular Engineering
Office
Bunger-Henry 303
Additional Research
  • Computational Chemistry
  • Organic Electronics
Google Scholar
https://scholar.google.com/citations?hl=en&user=GUYnP_cAAAAJ&view_op=list_works&sortby=pubdate

Erin L. Ratcliff

Portrait of Erin L. Ratcliff
eratcliff8@gatech.edu

Erin L. Ratcliff is a Full Professor in the School of Materials Science and Engineering and the School of Chemistry and Biochemistry at the Georgia Institute of Technology and holds a joint appointment at the National Renewable Energy Laboratory.  Prof. Ratliff is also the Associate Director of Scientific Continuity for Director of the currently funded Energy Frontier Research Center (EFRC) entitled “Center for Soft PhotoElectroChemical Systems (SPECS)”, a center which she directed at her prior appointment at University of Arizona.  

Her group “Laboratory for Interface Science for Printable Electronic Materials” uses a combination of applications and devices with electrochemistry, spectroscopies, microscopies, and synchrotron-based techniques to understand fundamental structure-property relationships of next-generation materials for energy conversion and storage and biosensing. Materials of interest include metal halide perovskites, π-conjugated materials, colloidal quantum dots, and metal oxides. Current research is focused on mechanisms of electron transfer and transport across interfaces, including semiconductor/electrolyte interfaces and durability of printable electronic materials.

Her research program has been funded by the Department of Energy Basic Energy Sciences, the Solar Energy Technology Office, Office of Naval Research, National Science Foundation, and the Nano Bio Materials Consortium.

Professor, School of Materials Science and Engineering
Professor, School of Chemistry and Biochemistry

Richard Neu

Richard Neu's profile picture
rick.neu@me.gatech.edu

Neu's research involves the understanding and prediction of the fatigue behavior of materials and closely related topics, typically when the material must resist degradation and failure in harsh environments. Specifically, he has published in areas involving thermomechanical fatigue, fretting fatigue, creep and environmental effects, viscoplastic deformation and damage development, and related constitutive and finite-element modeling with a particular emphasis on the role of the materials microstructure on the physical deformation and degradation processes. He has investigated a broad range of structural materials including steels, titanium alloys, nickel-base superalloys, metal matrix composites, molybdenum alloys, high entropy alloys, medical device materials, and solder alloys used in electronic packaging. His research has widespread applications in aerospace, surface transportation, power generation, machinery components, medical devices, and electronic packaging. His work involves the prediction of the long-term reliability of components operating in extreme environments such as the hot section of a gas turbine system for propulsion or energy generation. His research is funded by some of these industries as well as government funding agencies.

Professor, School of Materials Science and Engineering, Woodruff School of Mechanical Engineering
Director, Mechanical Properties Characterization Facility
Phone
404.894.3074
Office
MRDC 4104
Additional Research

Nanomaterials; micro and nanomechanics; Thermoelectric Materials; fracture and fatigue

Research Focus Areas
Google Scholar
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Bo Rotoloni

Bo Rotoloni's profile picture
bo.rotoloni@gtri.gatech.edu

Bo Rotoloni is a research engineer and executive leader at the forefront of today's toughest cybersecurity challenges. He serves as Director of Research at Georgia Tech Research Institute (GTRI) and as Director of the Information & Cyber Sciences Directorate (ICSD). Through these roles, he oversees a constellation of labs and units involving more than 500 people, $120 million in annual awards, and combined operating budgets of more than $11.5 million in order to achieve the operational vision, mission, goals and objectives for cybersecurity solutions by Georgia Tech. These roles have provided Rotoloni with extensive technical, financial, and managerial experience in government and industry. The combination of research, education, operations, and financial experience are unique in the cyber and information systems fields and Rotoloni frequently is called upon to deliver briefings to high-level, leading government officials and industry executives. The government is placing considerable attention on defending the nation against cyber warfare, with the explosion of both offensive and defensive cyber-related activity which also threaten private industry," Rotoloni said. "Our multi-faceted, comprehensive research structure at Georgia Tech allows us to actively meet urgent needs." Prior to joining GTRI, Rotoloni served as the director of Wavesplitter Technologies' rapid prototyping and engineering R&D center, where he was responsible for the operation and commissioning of a pilot manufacturing, rapid prototyping and R&D center within the passive and active optical components industry. In that role, Rotoloni was responsible for all facets of the operation including financials, production, support, operations and engineering. Prior to joining Wavesplitter Technologies, Rotoloni served as a Technical Manager at Lucent Technologies, responsible for the operation and development of ultra-high speed manufacturing processes within the manufacture of optical fiber for transmission. Specifically, Rotoloni was the lead engineer in the design and development of software and hardware for inline testing and coloring of optical fiber, which is still in use today. Rotoloni holds an M.S. in Electrical Engineering and a B.S. in Mechanical Engineering, both from Clemson University.

Director, Information & Cyber Sciences Directorate (ICSD)
Principal Research Engineer, Georgia Tech Research Institute
Phone
404.407.6534
Additional Research

Communication Systems; Defense / National Security; Modeling & Simulation

IRI And Role

Vincent Mooney

Vincent Mooney's profile picture
mooney@ece.gatech.edu
Vincent Mooney is an Associate Professor in the School of Electrical & Computer Engineering at the Georgia Institute of Technology. His research interests include system level design, hardware-software co-design, synthesis of reconfigurable architectures, logic synthesis, application-specific design, low-power architectures, modeling and compiler. He attended Yale University as an undergraduate and earned his Bachelor's in Electrical Engineering in 1991. He then went to San Sebastian, Spain where he attended the University of Navarra and earned a Certificate of Graduate Study in 1992. Mooney continued his graduate education at Stanford University where he earned a MS in Electrical Engineering in 1994, a MA in Philosophy in 1997, and his Ph.D. in Electrical Engineering in 1998. Mooney joined Georgia Tech's faculty in 1998.
Associate Professor, School of Electrical & Computer Engineering
Phone
404.385.0437
Office
KACB 2350A
Additional Research

Computer Engineering; Architecture & Design; Modeling & Simulation;

Research Focus Areas
IRI And Role

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

Vida Jamali

Vida Jamali's profile picture
vida@gatech.edu

Vida Jamali earned her Ph.D. in chemical and biomolecular engineering from Rice University under the guidance of Professor Matteo Pasquali and her B.S. in chemical engineering from Sharif University of Technology. Jamali was a postdoctoral researcher in Professor Paul Alivisato's lab at UC Berkeley and Kavli Energy Nanoscience Institute before joining Georgia Tech. The Jamali Research Group uses experimental, theoretical, and computational tools such as liquid phase transmission electron microscopy, rheology, statistical and colloidal thermodynamics, and machine learning to study the underlying physical principles that govern the dynamics, statistics, mechanics, and self-organization of nanostructured soft materials, in and out of thermal equilibrium, from both fundamental and technological aspects.

Assistant Professor, School of Chemical and Biomolecular Engineering
Phone
404.894.5134
Office
ES&T 1222
Additional Research

Studying dynamics and self-assembly of nanoparticles and macromolecules in heterogeneous chemical and biological environmentsInvestigating individual to collective behavior of active nanomachinesHarnessing the power of machine learning to understand physical rules governing nanostructured-soft materials, design autonomous microscopy experimentation for inverse material design, and develop new statistical and thermodynamic models for multiscale phenomena

Ching-Hua Huang, Ph.D.

Ching-Hua Huang, Ph.D. 's profile picture
ching-hua.huang@ce.gatech.edu

Ching-Hua Huang, Ph.D., is the Turnipseed Family Chair and Professor in the School of Civil and Environmental Engineering at Georgia Institute of Technology. Huang received her Ph.D. and M.S. degrees in environmental engineering from Johns Hopkins University. Huang’s expertise includes environmental chemistry, advanced water/wastewater treatment technology, contaminants of emerging concern, sustainable water reuse, waste remediation and resource recovery. Huang has supervised many research projects sponsored by various agencies, and has published more than 170 peer-reviewed journal papers, book chapters and conference proceeding papers. She is the Associate Editor of the American Chemical Society's Environmental Science & Technology Water and the Editorial Advisory Board member of Environmental Science & Technology. 

Turnipseed Family Chair and Professor, School of Civil and Environmental Engineering
Phone
404.893.7694
Office
School of Civil and Environmental Engineering

C.P. Wong

C.P. Wong's profile picture
cp.wong@mse.gatech.edu

Professor C. P. Wong is the Charles Smithgall Institute Endowed Chair and Regents’ Professor. After his doctoral study, he was awarded a two-year postdoctoral fellowship with Nobel Laureate Professor Henry Taube at Stanford University. Prior to joining Georgia Tech, he was with AT&T Bell Laboratories for many years and became an AT&T Bell Laboratories Fellow in 1992. 

His research interests lie in the fields of polymeric materials, electronic packaging and interconnect, interfacial adhesions, nano-functional material syntheses and characterizations. nano-composites such as well-aligned carbon nanotubes, grahenes, lead-free alloys, flip chip underfill, ultra high k capacitor composites and novel lotus effect coating materials. 

He received many awards, among those, the AT&T Bell Labs Fellow Award in 1992, the IEEE CPMT Society Outstanding Sustained Technical Contributions Award in 1995, the Georgia Tech Sigma Xi Faculty Best Research Paper Award in 1999, Best MS, PhD and undergraduate Thesis Awards in 2002 and 2004, respectively, the University Press (London) Award of Excellence, the IEEE Third Millennium Medal in 2000, the IEEE EAB Education Award in 2001, the IEEE CPMT Society Exceptional Technical Contributions Award in 2002, the Georgia Tech Class of 1934 Distinguished Professor Award in 2004, Outstanding Ph.D. Thesis Advisor Award in 2005, the IEEE Components, Packaging and Manufacturing Technology Field Award in 2006, the Sigma Xi’s Monie Ferst Award in 2007, the Society of Manufacturing Engineers (SME)’s TEEM Award in 2008, the 2009 IEEE -CPMT David Feldman Outstanding Contribution Award and the 2009 Penn State University Distinguished Alumni Award. The 2012 International Dresden Barkhausen Award (Germany). 

He holds over 65 U.S. patents, numerous international patents, has published over 1000 technical papers, 12 books and a member of the National Academy of Engineering of the USA since 2000.

Regents' Professor, School of Materials Science and Engineering
Smithgall Institute Endowed Chair
Phone
404-894-8391
Office
Love 367

Shuichi Takayama

Shuichi Takayama's profile picture
takayama@gatech.edu

Shu Takayama earned his BS and MS in Agricultural Chemistry at the University of Tokyo. He earned a Ph.D. in Chemistry at The Scripps Research Institute in La Jolla, California studying bio-organic synthesis with Dr. Chi‐Huey Wong. He then worked as a postdoc with Dr. George Whitesides at Harvard University where he focused on applying microfluidics to studying cell and molecular biology.

Takayama began his career at the University of Michigan, where led his lab in the Department of Biomedical Engineering and Macromolecular Science & Engineering for over 17 years. In 2017, the lab moved to Georgia Tech where Shu became the Georgia Research Alliance Price Gilbert Chair Professor of Biomedical Engineering in the Wallace H. Coulter Department of Biomedical Engineering.

Takayama’s research interests are diverse and motivated by clinical and biotechnology needs. He is always interested in hearing from stakeholders in these areas who are seeking engineering collaboration.

Professor, Wallace H. Coulter Department of Biomedical Engineering
GRA Eminent Scholar, Wallace H. Coulter Department of Biomedical Engineering
Price Gilbert, Jr. Chair in Regenerative Engineering andMedicine
Phone
404.385.5722
Office
EBB 4018
Additional Research

Use of micro/nanofluidics for cell analysis; diagnostics; and chromatin analysis; High throughput 3D cell cultures; Organs-on-a-chip construction and design; Role of rhythm in cell signaling; Self-switching fluidic circuits; Fracture fabrication

Google Scholar
https://scholar.google.com/citations?hl=en&user=IkhTUu4AAAAJ&view_op=list_works&sortby=pubdate