Area of research
Materials Chemistry · Mechanics of Materials
Research interest
Research interests include Materials science, Graphene, Carbon fibers, Passivation, Composite material, and Nanotechnology.
Extraordinary control of friction and wear enabled by ultrathin carbon and its atomic-scale interface and thickness manipulation
Novel Nano‐Pyramid/Polish Hybrid Morphology Designed for High‐Efficiency Passivated Contact Solar Cells
MXene enhanced Shape Memory Polymer Composites: The rise of MXenes as fillers for stimuli-responsive materials
Bi-layer in-situ phosphorus doped poly-Si films by PECVD for blistering-free high-efficiency industrial TOPCon solar cells
Recent advances in graphene-based phase change composites for thermal energy storage and management
Atomic scale controlled tunnel oxide enabled by a novel industrial tube‐based PEALD technology with demonstrated commercial TOPCon cell efficiencies > 24%
Graphene overcoats for ultra-high storage density magnetic media
Angstrom-Scale Transparent Overcoats: Interfacial Nitrogen-Driven Atomic Intermingling Promotes Lubricity and Surface Protection of Ultrathin Carbon
Unlocking the potential of boronsilicate glass passivation for industrial tunnel oxide passivated contact solar cells
A Comprehensive Fundamental Understanding of Atomic Layer Deposited Titanium Oxide Films for c-Si Solar Cell Applications
Slippery and Wear-Resistant Surfaces Enabled by Interface Engineered Graphene
Interface Engineering and Controlling the Friction and Wear of Ultrathin Carbon Films: High sp<sup>3</sup> Versus High sp<sup>2</sup> Carbons
Understanding the Role of Nitrogen in Plasma-Assisted Surface Modification of Magnetic Recording Media with and without Ultrathin Carbon Overcoats