Area of research
Electronic, Optical and Magnetic Materials · Materials Chemistry
Research interest
Research interests include Copper Interconnects and Reliability, 2D Materials and Applications, Magnetic properties of thin films, and Metal and Thin Film Mechanics.
Bilayer WSe2 as a natural platform for interlayer exciton condensates in the strong coupling limit
Relative grain boundary energies from triple junction geometry: Limitations to assuming the Herring condition in nanocrystalline thin films
Enhanced Superconductivity in Monolayer <i>T</i><sub>d</sub>-MoTe<sub>2</sub>
Simulation of Hubbard model physics in WSe2/WS2 moiré superlattices
Approaching the Intrinsic Limit in Transition Metal Diselenides via Point Defect Control
Collaborative Research: DMREF: Microstructure by Design: Integrating Grain Growth Experiments, Data Analytics, Simulation, and Theory
Collaborative Research: Towards a Predictive Theory of Microstructure Evolution in Polycrystalline Materials
E2CDA: Type I: Collaborative Research: Interconnects Beyond Cu
Collaborative Research: Towards Rare-Earth-Free Advanced Permanent Magnets - High-Anisotropy L10 Materials
Collaborative Research: Towards Rare-Earth-Free Advanced Permanent Magnets - High-Anisotropy L10 Materials
The A1 to L1_0 Transformation in FePt Films with Ternary Alloying Additions
The A1 to L1o Transformation in FePt, CoPt and Related Ternary Alloy Films
Evolution of Grain Structure in Thin Film Reactions
Evolution of Grain Structure in Thin Film Reactions
Acquisition of an Ultrahigh Vacuum Sputter Deposition System for the Preparation of Nanostructured Metal Films
Role of Grain Structure and Grain Boundary Diffusion in Thin Film Reactions