Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Materials science, Oxygen evolution, Catalysis, Supercapacitor, Cobalt, and Chemistry.
Dynamic Surface Chemistry of Catalysts in Oxygen Evolution Reaction
Synergizing aliovalent doping and interface in heterostructured NiV nitride@oxyhydroxide core-shell nanosheet arrays enables efficient oxygen evolution
Dynamic Surface Chemistry of Catalysts in Oxygen Evolution Reaction
Potential-Dependent Phase Transition and Mo-Enriched Surface Reconstruction of γ-CoOOH in a Heterostructured Co-Mo<sub>2</sub>C Precatalyst Enable Water Oxidation
Synergizing in-grown Ni3N/Ni heterostructured core and ultrathin Ni3N surface shell enables self-adaptive surface reconfiguration and efficient oxygen evolution reaction
Surface nitridation of nickel-cobalt alloy nanocactoids raises the performance of water oxidation and splitting
Quasi-solid-state fiber-shaped aqueous energy storage devices: recent advances and prospects
Significant Role of Al in Ternary Layered Double Hydroxides for Enhancing Electrochemical Performance of Flexible Asymmetric Supercapacitor
Recent Progress in Two‐Dimensional Layered Double Hydroxides and Their Derivatives for Supercapacitors
All-in-one stretchable coaxial-fiber strain sensor integrated with high-performing supercapacitor
Enlarged Interlayer Spacing in Cobalt–Manganese Layered Double Hydroxide Guiding Transformation to Layered Structure for High Supercapacitance
Cage-confinement pyrolysis route to size-controlled molybdenum-based oxygen electrode catalysts: From isolated atoms to clusters and nanoparticles