Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Photocatalysis, Materials science, Rhodamine B, Ionic liquid, X-ray photoelectron spectroscopy, and Chemical engineering.
Kilowatt-scale alkali-cation-free CO2 electrolysis via accelerating mass transfer
The synergistic effect of low concentration of peroxymonosulfate and visible light photocatalysis over FeOOH quantum dots/hollow g-C3N4 nanotubes S-scheme heterojunction for effectively antibiotics degradation
Unraveling the enhanced oxidative desulfurization activity: Synergistically boosting the formation of reactive oxygen species and active centers
Constructing highly effective CuS/In2S3 Z-scheme heterojunction with boosted charge transfer for enhanced photocatalytic performance
Construction of PCN-222(Pt)/BiOCl heterojunction with built-in electric field drive charge separation for enhanced photocatalytic performance
Hierarchical Bi/Bi <sub>2</sub> O <sub>3</sub> heterostructures with robust oxygen vacancies for efficient electrochemical CO <sub>2</sub> reduction to formate
Construction of carbonized polymer dots/potassium doped carbon nitride nanosheets Van der Waals heterojunction by ball milling method for facilitating photocatalytic CO2 reduction performance in pure water
Low concentration of peroxymonosulfate coupled with visible light triggers oxygen reactive species generation over constructed Bi25FeO40/BiOCl Z-scheme heterojunction for various tetracycline antibiotics removal
Sulfur-vacancy induced asymmetric active site for Bi19S27Br3 nanorods photocatalyzes CO2 conversion to ethylene
CoTCPP integrates with BiOBr microspheres for improved solar-driven CO2 reduction performance
Rational construction of bromine doped rose-like Bi2O2CO3 microspheres for enhanced visible-light-driven degradation
One-step construction of Sn-doped Bi2MoO6 nanosheets for enhanced photocatalytic organic pollutants degradation and Cr(VI) reduction
Construction of Z-Scheme MnO<sub>2</sub>/BiOBr Heterojunction for Photocatalytic Ciprofloxacin Removal and CO<sub>2</sub> Reduction
Synthesis of Bi<sub>25</sub>FeO<sub>40</sub> Nanoparticles with Oxygen Vacancies via Ball Milling for Fenton Oxidation of Tetracycline Hydrochloride and Reduction of Cr(VI)
Construction of Z-scheme NiO/BiOBr heterojunction for facilitating photocatalytic degradation of oxytetracycline and 2-mercaptobenzothiazole
Construction of Bi Nanoparticles Loaded BiOCl Nanosheets Ohmic Junction for Photocatalytic CO2 Reduction
In-situ embedded ultrafine Bi12O17Br2 nanotubes in MOF-derived hierarchical porous carbon for enhanced photocatalytic CO2 conversion to CO
In-situ construction of Sn-doped BiOCl/Bi2WO6 heterojunction for excellent organic pollutants degradation: Insight into performance and mechanism
Steering Charge Directional Separation in MXenes/Titanium Dioxide for Efficient Photocatalytic Nitrogen Fixation
Oxygen defect modulating the charge behavior in titanium dioxide for boosting photocatalytic nitrogen fixation performance
Rapid room-temperature mechanosynthesis tensile-strained Bi3O4Br for robust photomineralization
Mechanical forces hammer Mn into Bi3O4Br under room temperature for efficient photocatalytic degradation
Supramolecular tetracarboxyphenylporphyrin modified bismuth oxybromide with improved molecular oxygen activation for antibiotics photodegradation
Chemical bonding interface in Bi2Sn2O7/BiOBr S-scheme heterojunction triggering efficient N2 photofixation
Interfacial chemical bond modulated Bi19S27Br3/g-C3N4 Z-scheme heterojunction for enhanced photocatalytic CO2 conversion
Hierarchical columnar ZnIn2S4/BiVO4 Z-scheme heterojunctions with carrier highway boost photocatalytic mineralization of antibiotics
Porous edge confinement: High carrier potential and low activation energy barrier synergistically boosting the efficiency of selective photocatalytic CO2 conversion
Oxygen vacancy triggering the broad-spectrum photocatalysis of bismuth oxyhalide solid solution for ciprofloxacin removal
Heterostructured Bi–Cu<sub>2</sub>S nanocrystals for efficient CO<sub>2</sub> electroreduction to formate
“Electron collector” Bi19S27Br3 nanorod-enclosed BiOBr nanosheet for efficient CO2 photoconversion