Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Materials science, Photocurrent, Photocatalysis, Water splitting, Heterojunction, and Visible spectrum.
Optimizing *CO/CO Supply by Atomically Dispersed Fe Sites for High‐rate CO <sub>2</sub> ‐to‐C <sub>2</sub> H <sub>4</sub> Conversion Under Visible Light
Optimize molecular engineering of high-crystal PTI/PHI homojunctions for enhanced photoreforming of Poly(ethylene terephthalate) plastics into high-value chemicals
g-C3N4/α-Fe2O3 with strong electronic coupling bonds for efficient photoreforming of PET for hydrogen production
Well-defined diatomic catalysis for photosynthesis of C2H4 from CO2
Clustering‐Resistant Cu Single Atoms on Porous Au Nanoparticles Supported by TiO<sub>2</sub> for Sustainable Photoconversion of CO<sub>2</sub> into CH<sub>4</sub>
Surface plasmon enhancement of 1D Ag nanowires modified electro-treated BiVO4 photoanode with abundant oxygen vacancies for solar water oxidation
Enhancement of BiVO4 photoanode surface oxygen evolution kinetics via Ni-Fe-ZIF derived bimetallic NiFeOx co-catalyst for water oxidation
Nitrogen-doped graphene quantum dots embedding CuCo-LDH hierarchical hollow structure for boosted charge storage capability in supercapacitor
Near-Infrared Light-Driven Photocatalytic Reforming Lignocellulose into H<sub>2</sub> and Chemicals over Heterogeneous Carbon Nitride
Visible-light-driven photoreforming of poly(ethylene terephthalate) plastics <i>via</i> carbon nitride porous microtubes
Ultrathin metal Ni layer on ZnO/TiO2 photoelectrodes with excellent photoeletrochemical performance in multiple electrolyte solutions
Copolymerization synthesis of highly hydrophilic carbon nitride for efficient solar hydrogen production
Bimetallic Ni–Co-ZIF derived (Ni, Co)Se2/BiVO4 heterojunction photoelectrodes with oxygen vacancy for enhancing PEC performance
Infrared light dual excitation of Ni-phytate-sensitized ZnIn<sub>2</sub>S<sub>4</sub> with sulfur vacancies for enhanced NIR-driven photocatalysis
Novel 2D Zn-porphyrin metal organic frameworks revived CdS for photocatalysis of hydrogen production
Kinetics-favorable heterojunctional CNTs@CuCo-LDH/BPQD electrode with boosted charge storage capability for supercapacitor
MOF derived NiO thin film formed p-n heterojunction with BiVO4 photoelectrode for enhancement of PEC performance
Oxygen-rich vacancies CuCoLDH with 1D/2D nanoarray structure for high performance asymmetric supercapacitor
Metal-organic framework derived Co3O4/TiO2 heterostructure nanoarrays for promote photoelectrochemical water splitting
ZIF-8 derived ZnO/TiO2 heterostructure with rich oxygen vacancies for promoting photoelectrochemical water splitting
Amorphous iron (III)-borate decorated electrochemically treated-BiVO4 photoanode for efficient photoelectrochemical water splitting
Dual-functional electrochemical bio-sensor built from Cu2O for sensitively detecting the thiols and Hg2+
Fabrication of ZnxCo1-xO4/BiVO4 photoelectrodes by electrostatic attraction from bimetallic Zn-Co-MOF for PEC activity
In-situ implantation of plasmonic Ag into metal-organic frameworks for constructing efficient Ag/NH2-MIL-125/TiO2 photoanode
Synthesis of ternary spinel MCo2O4 (M = Mn, Zn)/BiVO4 photoelectrodes for photolectrochemical water splitting
Organic-inorganic hybrid-photoanode built from NiFe-MOF and TiO2 for efficient PEC water splitting
Fabrication of BiVO4-Ni/Co3O4 photoanode for enhanced photoelectrochemical water splitting
Amorphous MnCO<sub>3</sub>/C Double Layers Decorated on BiVO<sub>4</sub> Photoelectrodes to Boost Nitrogen Reduction
Ag-Pi/BiVO4 heterojunction with efficient interface carrier transport for photoelectrochemical water splitting
Photoelectrochemical detection of 4-nitrophenol by sensitive Ni/Cu2O photocathode