Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Catalysis, Bifunctional, Water splitting, Electrochemistry, and Anode.
Constructing dual Lewis acid sites in RuO2-Co3O4 heterostructure to regulate intermediate adsorption for highly selective chlorine evolution reaction
Enhancing the dynamic structural evolution of NiOOH on nickel nitride surface for efficient 5-hydroxymethylfurfural oxidation
Rhodium Metallene With Wrinkle‐Induced Lattice Strain for Acetonitrile Electroreduction Related Energy Conversion
Balancing the competitive adsorption of urea and OH− over V-NiCo@NC for enhancing urea electrolysis at high current density
Energy-Efficient Ammonia Production via Coupled Hydrazine Hydrate Oxidation Using CuCo<sub>2</sub>O<sub>4</sub> Nanodendrites with Ultrathin Nanosheet Subunits
Revealing the reactant adsorption role of high-valence WO3 for boosting urea-assisted water splitting
Brønsted bases promote interfacial proton transfer for enhanced biomass electrocatalysis
Regulating the Competitive Adsorption of Urea and OH <sup>−</sup> via Brønsted Base Intercalated Nickel Sites for Highly Selective Urea Oxidation
Progress and perspective of Na1-δNixFeyMnzO2 cathode for high-energy-density and long-cycle-life sodium‐ion batteries
Electron delocalization state-induced intermediate selective adsorption for efficient chlorine evolution in seawater electrolysis
Tuning the eg∗ band broadening of the in-situ NiOOH by W doping for efficient biomass electrooxidation
Dual active site bridging adsorption mechanism of Ni-WO3 for boosting urea electrolysis at large current density
The role of ammonium formate electrolyte additive for aqueous zinc-ion batteries: Inducing Zn(002) deposition and suppressing hydrogen evolution
Orbital-hybridization-induced intermediate stabilization on turing high-entropy metallene for electrocatalytic polyethylene terephthalate valorization coupled with hydrogen evolution
Microenvironment regulation of anode-electrolyte interface enables highly stable Zn anodes
Unveiling the dynamic reconstruction mechanism of NiMo alloy for enhanced 5-hydroxymethylfurfural electrooxidation
Synergistic modulation of hydrogen bond network reconstruction and pH buffering of electrolyte enables highly reversible Zn anode
An Electrostripping Strategy for Constructing a 3D Honeycomb‐Like Zn Anode Toward Dendrite‐Free Zinc‐Ion Batteries
Constructing a 3D Zinc Anode Exposing the Zn(002) Plane for Ultralong Life Zinc‐Ion Batteries
Built-in electric field in NiO-CuO heterostructures to regulate the hydroxide adsorption sites for 5-hydroxymethylfurfural electrooxidation assisted hydrogen production
Regulating Reaction Intermediate Adsorption of Co<sub>0.5</sub>NiS<sub>2</sub>–Ni<sub>3</sub>S<sub>2</sub> Nanorods for Efficient Urea Electrolysis
Modulation of hydroxymethyl/aldehyde groups activation on V2O3 decorated CuCo for 5-hydroxymethylfurfural electrooxidation
Tailoring competitive adsorption sites of hydroxide ion to enhance urea oxidation-assisted hydrogen production
Agglomeration inhibition engineering of nickel–cobalt alloys by a sacrificial template for efficient urea electrolysis
Strong electronic coupling of NiCo2O4 and CeO2 regulates the nucleation and decomposition of Li2CO3 for high-rate performance Li–CO2 batteries
Cycad-leaf-like crystalline-amorphous heterostructures for efficient urea oxidation-assisted water splitting
Anthraquinone-based polymer modified BiVO4 photoanode with strong electron-withdrawing functional groups for boasting photoelectrochemical water oxidation
Reaction pathway and anti-poisoning mechanism of Pt-based alloy catalysts in the ammonia oxidation reaction
Boron‐Doping Engineering in AgCd Bimetallic Catalyst Enabling Efficient CO<sub>2</sub> Electroreduction to CO and Aqueous Zn‐CO<sub>2</sub> Batteries
Constructing strong interaction between Pt and CeO for boosting ammonia electrolysis based on hard-soft acid-base principle