Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Catalysis, Materials science, Water splitting, Bifunctional, Oxygen evolution, and Urea.
O-Induced Diatomic Fe–Mo Mimetic Enzyme for Efficient Electrocatalytic Nitrogen Reduction at Universal pH
A ternary deep eutectic solvent for efficient biomass fractionation and lignin stabilization
Synergistic multiphase lattice strains and built-in electric field in lignin-derived carbon coupled with Mo-Cu-Ni multimetallic for enhanced urea-assisted water electrolysis
Interfacial lattice strain and electronic transfer induced by lignin-derived carbon coupled with Ni-Mn2Mo3O8 heterojunction for improving industrial-level urea electrolysis
Self-supported lignin-derived carbon coupling with Mo-doped NiO and NiCo alloy heterojunction stimulates lattice tensile strain and electron transfer for boosting ampere-level urea electrolysis
Optimization of Interfacial Electrons and Compressive‐Tensile Strains at Lignin‐Derived Carbon‐Supported Multiphase Ni/Cu/MoO <sub>2</sub> Interfaces for Boosting Large Current‐Density HER
MoO <sub>2</sub> ‐Mediated Ni─Fe Bond Contraction and Electronic Modulation in Ni <sub>3</sub> Fe Alloy for Efficient Water Electrolysis at High‐Current‐Densities
Modification of carbonized lignocellulose framework with FeNi-SnOx heterojunctions for enhanced electromagnetic interference shielding
Anionic polyelectrolyte-regulated cellulose nanocrystal-based hydrogels for controllable drug release
A high-efficiency urea electrolysis catalyst: Sulfur-doped lignin-derived carbon-encapsulated NiCo@MoO2 with triphasic interface and superhydrophilic/superaerophobic surfaces
Lignin-derived carbon-supported MoNi4-NiO heterostructure with micro-nano array for enhancing pH-universal HER at ampere-level current density
Study of antioxidant properties of sulfomethylated lignin and its application in pesticide dispersants
Strategies for Tuning Tensile Strain and Localized Electrons in a Mo‐Doped NiCoCu Alloy for Enhancing Ampere‐Level Current Density HER Performance
In situ growth of copper nanoparticles in nitrogen-doped carbonized wood for efficiently enhancing its capacitive performance and electrocatalytic hydrogen evolution
Highly sensitive MXene-enhanced polyacrylamide/ carboxymethyl cellulose double-network hydrogels with wide operation range for wearable electronics
Strengthening CuNiCoMo medium-entropy alloy by tuning local lattice tensile strain and built-in electric field for boosting urea oxidation reaction
Electromagnetic porous lignocellulosic matrix composites: A green electromagnetic shielding material with high absorption efficient electromagnetic interference
Engineering of novel vanadium-doped Ni4N@CuCoN0.6 heterostructure for enhancing urea oxidation reaction at high current density
Superhydrophilicity and Electronic Modulation on Self‐Supported Lignin‐Derived Carbon Coupled with NiO@MoNi<sub>4</sub> for Enhancing Urea Electrolysis
Lattice tensile strain regulated by ruthenium doping in NiCoP anchoring on carbonized wood for promoting hydrogen evolution reaction
AgI/UiO-66-NH2@carbonized wood fabricated as self-floating heterojunction for enhancing visible light-driving photocatalytic degradation of Rhodamine B
Novel V-doped CuCoN0.6/Ni4N heterojunction for boosting water electrolysis by facilitating water dissociation and H* adsorption-desorption kinetics
Oxygen vacancies and heterojunction synergistically enhancing degradation of rhodamine B by UiO-66-NH2 derived photocatalyst
Strong electronic coupling of CoNi and N‐doped‐carbon for efficient urea‐assisted H<sub>2</sub> production at a large current density
Coupling interface engineering with electronic interaction toward high-efficiency H2 evolution in pH-universal electrolytes
N-induced compressive strain in Ni-MoO2 heterostructure with micro-nano array for improving high-current-output urea-assisted water electrolysis performance
A highly strong PEDOT modified wood towards efficient electromagnetic interference shielding
Design of Single‐Atom Catalysts for E lectrocatalytic Nitrogen Fixation
Carbonized wood-based electrode anchored with Cu/Cu3P Nano particles fabricated from wood-based adsorbent for boosting capacitive performance
Boosting urea-assisted water splitting by constructing sphere-flower-like NiSe2-NiMoO4 heterostructure