Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Materials science, Catalysis, Electrocatalyst, Electrochemistry, Electrolysis, and Anode.
Identifying the Bifunctional Mechanism in Alkaline Water Electrolysis by Lewis Pairs at the Single-Atom Scale
Advancing Multiscale-Coupled Heterointerface Catalysts for Enhanced Water Electrolysis
Breaking the Scaling Relationship in Water Oxidation Enabled by the Electron Buffering Effect of the Fullerene Network
Fullerene Network‐Buffered Platinum Nanoparticles Toward Efficient and Stable Electrochemical Ammonia Oxidation Reaction for Hydrogen Production
Trigonometric gradient microstructures in additively manufactured single crystals enable strength-ductility synergy and programmable performance
Unlocking cathodic potential dependent Pd deactivation for energy efficient CO2 electroreduction to formate
Selective and stable CO2 electroreduction at high rates via control of local H2O/CO2 ratio
Compositional regulation in additive manufacturing of precipitation-hardening (CoCrNi)94Ti3Al3 medium-entropy superalloy: Cellular structure stabilization and strength enhancement
Cu/LaF<sub>3</sub> Interfaces Boost Electrocatalytic CO-to-Acetate Conversion
Selective production of ethylene glycol at high rate via cascade catalysis
A precipitation strengthened high entropy alloy with high (Al+Ti) content for laser powder bed fusion: Synergizing in trinsic hot cracking resistance and ultrahigh strength
Promote electroreduction of CO <sub>2</sub> via catalyst valence state manipulation by surface-capping ligand
Additive-Assisted Electrodeposition of Cu on Gas Diffusion Electrodes Enables Selective CO<sub>2</sub> Reduction to Multicarbon Products
Dynamic interphase–mediated assembly for deep cycling metal batteries
Strategies in catalysts and electrolyzer design for electrochemical CO<sub>2</sub>reduction toward C<sub>2+</sub>products
Recent Progress of the Solid‐State Electrolytes for High‐Energy Metal‐Based Batteries
Stable Lithium Electrodeposition at Ultra‐High Current Densities Enabled by 3D PMF/Li Composite Anode
Regulating Li deposition at artificial solid electrolyte interphases