Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Materials science, Photocatalysis, Heterojunction, Flue-gas desulfurization, Catalysis, and Photocurrent.
CoP/Mo2N@CNF heterojunctions with modified electronic structure for enhanced hydrogen evolution assisted by 5-hydroxymethylfurfural
Exploring the friction mechanism of a-C:H:Si:O film under water-lubricated condition
Rationally designing of Co-WS2 catalysts with optimized electronic structure to enhance hydrogen evolution reaction
Constructing CoO/Mo<sub>2</sub>C Heterostructures with Interfacial Electron Redistribution Induced by Work Functions for Boosting Overall Water Splitting
The influence of reconstructive transformation from micro-/nanostructured copper(II) hydroxide to copper oxides as electrodes for high-performance supercapacitors
Biosynthesis and physicochemical properties of low molecular weight gellan produced by a high-yield mutant of Sphingomonas paucimobilis ATCC 31461
Construction of Z-scheme Bi12O15Cl6/SnO2−x heterojunction for enhanced photocatalytic degradation of dyes and antibiosis
Enhanced photocatalytic antibacterial and degradation performance by n-p type 0D/2D SnO2−x/BiOI photocatalyst under LED light
Construction of oxygen vacancy assisted Z-scheme BiO2−x/BiOBr heterojunction for LED light pollutants degradation and bacteria inactivation
Fabrication of novel narrow/wide band gap Bi4O5I2/BiOCl heterojunction with high antibacterial and degradation efficiency under LED and sunlight
Enhancement of photocatalytic activity of Z-scheme BiO2-x/BiOI heterojunction through vacancy engineering
Fabrication oxygen defect-mediated double Z-scheme BiOI/BiO2−x/BiOBr photocatalyst for pollutions degradation and bacteria inactivation
Construction of a n-p type Bi12O15Cl6@BiOI-CQDs junction with core-shell structure for boosting photocatalytic degradation and antibacterial performance
In-situ generation Bi12O15Cl6/BiOI core-shell photocatalyst with efficient LED light-driven degradation and antibacterial properties: Factors, degradation pathway and mechanism
Electrocatalytic Hydrogen Evolution of Ultrathin Co‐Mo<sub>5</sub>N<sub>6</sub> Heterojunction with Interfacial Electron Redistribution
p-n BiOI/Bi3O4Cl hybrid junction with enhanced photocatalytic performance in removing methyl orange, bisphenol A, tetracycline and Escherichia coli
A novel AgI/BiOI/pg-C3N4 composite with enhanced photocatalytic activity for removing methylene orange, tetracycline and E. coli
Rational design of ultra-small photoluminescent copper nano-dots loaded PLGA micro-vessels for targeted co-delivery of natural piperine molecules for the treatment for epilepsy
Fabrication of carbon quantum dots/1D MoO3-x hybrid junction with enhanced LED light efficiency in photocatalytic inactivation of E. coli and S. aureus
Boron defect engineering in boron nitride nanosheets with improved adsorptive desulfurization performance
Metal‐free boron nitride adsorbent for ultra‐deep desulfurization
Enantioselective hydrogenation of N-heteroaromatics catalyzed by chiral diphosphine modified binaphthyl palladium nanoparticles
Boron Nitride Mesoporous Nanowires with Doped Oxygen Atoms for the Remarkable Adsorption Desulfurization Performance from Fuels
A large number of low coordinated atoms in boron nitride for outstanding adsorptive desulfurization performance
Carbon-doped porous boron nitride: metal-free adsorbents for sulfur removal from fuels
Hydrophobic mesoporous silica-supported heteropolyacid induced by ionic liquid as a high efficiency catalyst for the oxidative desulfurization of fuel
Novel heterogeneous iron-based redox ionic liquid supported on SBA-15 for deep oxidative desulfurization of fuels
Phosphotungstic Acid Immobilized on Ionic Liquid-Modified SBA-15: Efficient Hydrophobic Heterogeneous Catalyst for Oxidative Desulfurization in Fuel
Pyridinium-based temperature-responsive magnetic ionic liquid for oxidative desulfurization of fuels