Georgia Tech Research Corporation, Atlanta, GA

 
 

Materials Sciences and Engineering Division (BES) 

  • First-Principles Studies of Phase Stability and Reaction Dynamics in Complex Metal Hydrides

  • Structure and Dynamics of Material Surfaces, Interphase-Interfaces and Finite Aggregates

  • First-Principles Investigation of Complex Materials Properties

  • The Organic Chemistry of Conducting Polymers:  From Molecular Wires to Photovoltaics

  • Microstructural Evolution Detection in Metallic Alloys Using Scattering and Electrical Methods

  • Spin-Torque in Systems with Inhomogeneous Magnetization

  • Thermal Emission Control Using Modified One-Dimensional Photonic

  • Manifestations of Quantum Phase Transitions in Transport Through Nanosystems

  • Spin Polarized Electron Transport Through Aluminum Nanoparticles

  • NanoMechanics: Elasticity and Friction in Nano-Objects

  • Hyperbranched Conjugated Polymers and Their Nanodot Composites as Universal Bioinspired Architectures

Chemical Sciences, Geosciences, & Biosciences Division (BES) 

  • Time Resolved Optical and Thermal Studies and the Proton Pump Mechanism of Bacteriorhodopsin

  • Low Energy Electron Interactions with Interfaces and Biological Targets

  • Thickness and History Dependent Effects on Crosslinked Polyimide Membrane Materials for Natural and Gas Separations

  • Developing the Science of Immobilized Molecular Catalysts

  • Understanding the Interfacial Structures - Chemistry Relationships in Solid Oxide Fuel Cells (SOFC)

Environmental Remediation Sciences Division (BER)

  • Promoting Uranium Immobilization by the Activities of Microbial Phophatases

Research Division (FES) 

  • Advanced Design Studies

  • Collaborative Analysis of DIII-D

Medical Sciences Division (BER)  

  • Probing Single Microbial Proteins and Multi-Protein Complexes with Bioconjugated Quantum Dots

Climate Change Research Division (BER) 

  • A Coordinated Effort to Improve Parameterization of High Latitude Cloud and Radiation Processes

  • Systematic Development of a Sub-Grid Scaling Framework to Improve Land Simulation

Physics Research Division (NP)

  • Nuclear Structure Research

Mathematical Information, & Computational Sciences Division (ASCR) 

  • Toward Highly Secure and Autonomic Computing systems: A Hierarchical Approach

 

*Total Amount Funded by the Office of Science for FY06 ($ in thousands): $4,371