Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Materials science, Photocatalysis, Chemical engineering, Graphene, Superhydrophilicity, and Membrane.
Formamide-assisted synthesis of phosphate-intercalated Ni(OH)2/NiOOH electrode for boosting oxygen evolution reaction
Cracked Metal–Phenolic Networks with Durable Confinement Capillarity for Enhanced Solar Desalination
Manipulating Precursor to Anchor Mo <sub>3</sub> S <sub>9</sub> Cluster onto Carbon Nitride for Photocatalytic H <sub>2</sub> Production
One-step construction of ZnmIn2S3+m gradient heterojunctions with enhanced photocatalytic hydrogen evolution performance
Protein-induced silica coated PVDF membrane with long-term acid resistance and outstanding anti-oil-fouling performance for highly efficient separation of strongly acidic emulsion
Tilted Crack‐Engineered Photothermal Membranes Achieve Attenuation‐Free Solar Evaporation and Oil Recovery From Emulsions
Promoting Solar Hydrogen Production of Silicon Heterojunction Photocathode Via Constructing Solution‐Processed Ni<sub>3</sub>S<sub>2</sub>/Cu/Ce(OH)<sub>3</sub> Nanoarchitecture
Bio-inspired cracked metal-phenolic networks with durable confinement capillarity and photocatalysis for highly efficient evaporation and water remediation
One-step hydrothermal synthesis CdS/CdIn2S4 heterostructure with high visible light activity for hydrogen evolution
Codecoration of Phosphate and Iron for Improving Oxygen Evolution Reaction of Layered Ni(OH)<sub>2</sub>/NiOOH
Surface Engineering of 3D Solar Evaporator for Uncompromising Water Evaporation and Salt Production Toward High Concentration Brine
Constructing an Open-Structured J-Type ZnIn<sub>2</sub>S<sub>4</sub>/In(OH)<sub>3</sub> Heterojunction for Photocatalytical Hydrogen Generation
Coupling amorphous WO3 with WP as a cocatalyst for efficient dye-sensitizated photocatalytic hydrogen evolution
In situ anchoring of Ni12P5 on ZnIn2S4 for efficient and stable photocatalytic H2 evolution
Multiple Enzyme-Mimicking CuMOF-Driven Self-Cascading Antioxidant Reaction for Synergistic Electrochemiluminescence Modulation in Ultrasensitive Biosensing
Precisely Assembling a CoO Cocatalyst onto Tb<sub>4</sub>O<sub>7</sub>/CN and Pt-Tb<sub>4</sub>O<sub>7</sub>/CN for Promoting Photocatalytic Overall Water Splitting
The synthesis of 3D organic–inorganic hybrid heterojunctions of g-C<sub>3</sub>N<sub>4</sub> nanoneedles@Ti<sub>3</sub>C<sub>2</sub> MXene with superior photocatalytic H<sub>2</sub> evolution
Facilely and efficiently constructing anti-oil-fouling zwitterionic coatings on membranes for oil-in-water emulsion separation
In-situ converting CoO@Co/RGO into Co/Co(OH)2/RGO for improved dye-sensitized photocatalytic H2 evolution
Solution‐Processed Fabrication of Ni<sub>3</sub>S<sub>2</sub>‐Based Nanoheterostructure on Silicon Heterojunction Photocathode for Boosting Solar Hydrogen Generation
Solution Processing Silicon Heterojunction Photocathode for Efficient and Stable Hydrogen Production
Synthesis of oriented J type ZnIn2S4@CdIn2S4 heterojunction by controllable cation exchange for enhancing photocatalytic hydrogen evolution
Precisely loading Pt on Tb4O7/CN heterojunction for efficient photocatalytic overall water splitting: Design and mechanism
Electrodeposited crystalline-amorphous Ni-Ni(OH)2 electrocatalysts for efficient hydrogen evolution via alkaline water splitting
Effect of molten-salt modulation on the composition and structure of g-C<sub>3</sub>N<sub>4</sub>-based photocatalysts
Construction of π-conjugated crystalline carbon dots with carbon nitride nanofragments for efficient photocatalytic H<sub>2</sub> evolution
Facile synthesis of noble-metal-free MoP as an efficient catalyst for H2 evolution from formaldehyde solution
Facile construction of porous C-PDA@CN-ms core-shell heterostructures with superior photocatalytic H2 evolution
Engineering Metal–Phenolic Networks for Solar Desalination with Directional Salt Crystallization
Strategies for improving photoelectrochemical water splitting performance of Si‐based electrodes