Area of research
Electrical and Electronic Engineering · Control and Systems Engineering
Research interest
Research focused on Overpotential and Process engineering, with related work in Oxygen evolution, Polysulfide, Composite number. Notable publications include 'A Glass‐Ceramic with Accelerated Surface Reconstruction toward the Efficient Oxygen Evolution Reaction', 'OptCAMD: An optimization-based framework and tool for molecular and mixture product design', and 'Non-covalent interaction of atomically dispersed dual-site catalysts featuring Co and Ni nascent pair sites for efficient electrocatalytic overall water splitting'.
Synergistic Interface Engineering of Heterojunction and Oxygen Vacancies in Multiphase Cobalt Oxide/Graphene Composite Host for High‐Performance Lithium–Sulfur Batteries
Regulating Solvating Configuration to Achieve Long‐Cycle‐Life in Sodium‐SPAN Batteries
Antibacterial Activity of GO-Based Composites Enhanced by Phosphonate-Functionalized Ionic Liquids and Silver
Dynamic 3D-Network Coating Composite Enables Global Isolation of Phosphopeptides, Stepwise Separation of Mono- and Multi-Phosphopeptides, and Phosphoproteomics of Human Lung Cells
Anion ratio-directed design of CaB<sub>4</sub>O<sub>5</sub>F<sub>4</sub> and CaB<sub>6</sub>O<sub>8</sub>F<sub>4</sub>: [BO<sub>3</sub>]/[BO<sub>2</sub>F<sub>2</sub>] hybridization tailoring deep-ultraviolet nonlinear optical performance
Non-covalent interaction of atomically dispersed dual-site catalysts featuring Co and Ni nascent pair sites for efficient electrocatalytic overall water splitting
A Glass‐Ceramic with Accelerated Surface Reconstruction toward the Efficient Oxygen Evolution Reaction
A Glass‐Ceramic with Accelerated Surface Reconstruction toward the Efficient Oxygen Evolution Reaction
OptCAMD: An optimization-based framework and tool for molecular and mixture product design
A Computer-Aided Methodology for Mixture-Blend Design. Applications to Tailor-Made Design of Surrogate Fuels