Area of research
Mechanical Engineering · Materials Chemistry
Research interest
Research focused on Flue-gas desulfurization and Dibenzothiophene, with related work in Boron nitride, Catalysis, Ionic liquid. Notable publications include 'Deep oxidative desulfurization of dibenzothiophene with POM-based hybrid materials in ionic liquids', 'The selectivity for sulfur removal from oils: An insight from conceptual density functional theory', and 'Rational control of sequential morphology evolution and vertical distribution toward 17.18% efficiency all-small-molecule organic solar cells'.
Porous ionic liquids for oxidative desulfurization influenced by electrostatic solvent effect
Design of dual-functional protic porous ionic liquids for boosting selective extractive desulfurization
Facile preparation of decavanadate-based poly (ionic liquids) for efficient aerobic oxidative desulfurization
Highly efficient extractive desulfurization by specific functionalized porous ionic liquids via C-H···π interactions
Construction of amphiphilic and polyoxometalate poly(ionic liquids) for enhanced oxidative desulfurization in fuel
Numerical Study on the Combustion Properties of Ammonia/DME and Ammonia/DMM Mixtures
Facile Synthesis of Alkaline Ternary Deep Eutectic Solvents: Application for Effective and Reversible SO<sub>2</sub> Uptake
Rational control of sequential morphology evolution and vertical distribution toward 17.18% efficiency all-small-molecule organic solar cells
Tethered Small‐Molecule Acceptors Simultaneously Enhance the Efficiency and Stability of Polymer Solar Cells
Construction of Mo-MOF-derived molybdenum dioxide on carbon nanotubes with tunable nitrogen content and particle size for oxidative desulfurization
Insights into the formation mechanism of aliphatic acid-choline chloride deep eutectic solvents by theoretical and experimental research
Selective adsorption desulfurization by single Al atom anchoring on the surface of hexagonal boron nitride through SAl coordination
Synergistic Effect in Plasmonic CuAu Alloys as Co-Catalyst on SnIn4S8 for Boosted Solar-Driven CO2 Reduction
Aerobic Oxidative Desulfurization by Nanoporous Tungsten Oxide with Oxygen Defects
Unraveling the effects of O-doping into h-BN on the adsorptive desulfurization performance by DFT calculations
Binary molten salts mediated defect engineering on hexagonal boron nitride catalyst with long-term stability for aerobic oxidative desulfurization
Efficient aerobic oxidative desulfurization via three-dimensional ordered macroporous tungsten-titanium oxides
Tuning the electrophilicity of vanadium-substituted polyoxometalate based ionic liquids for high-efficiency aerobic oxidative desulfurization
Boron and Nitride Dual vacancies on Metal‐Free Oxygen Doping Boron Nitride as Initiating Sites for Deep Aerobic Oxidative Desulfurization
Deep eutectic solvent-induced high-entropy structures in boron nitride for boosted initiation of aerobic oxidative desulfurization of diesel
Synthesis of hierarchical porous BCN using ternary deep eutectic solvent as precursor and template for aerobic oxidative desulfurization
O<sub>2</sub> Activation and Oxidative Dehydrogenation of Propane on Hexagonal Boron Nitride: Mechanism Revisited
Macroscopic 3D boron nitride monolith for efficient adsorptive desulfurization
Tailoring Electronic Properties of Porphyrin Manganese on Boron Nitride for Enhancing Aerobic Oxidative Desulfurization at Room Temperature
Supported phosphotungstic-based ionic liquid as an heterogeneous catalyst used in the extractive coupled catalytic oxidative desulfurization in diesel
Magnetic mesoporous nanospheres supported phosphomolybdate-based ionic liquid for aerobic oxidative desulfurization of fuel
Molybdenum-containing dendritic mesoporous silica spheres for fast oxidative desulfurization in fuel
Ionic liquid-supported 3DOM silica for efficient heterogeneous oxidative desulfurization
Synthesis of WO3/mesoporous ZrO2 catalyst as a high-efficiency catalyst for catalytic oxidation of dibenzothiophene in diesel
Tuning the Chemical Hardness of Boron Nitride Nanosheets by Doping Carbon for Enhanced Adsorption Capacity