Area of research
Mechanical Engineering · Materials Chemistry
Research interest
Research interests include Catalysis, Materials science, Flue-gas desulfurization, Boron nitride, Chemistry, and Adsorption.
Regulating the electron affinity of NiMo/Al2O3 to enhance ultra-deep hydrodesulfurization of diesel
In2O3 modification mitigates Jahn-Teller effect in LiMn2O4 enhancing lithium extraction efficiency and stability
Deep extractive denitrogenation with Cu‐based ionic liquids and mechanistic insights
Green pathways to low-sulfur diesel: advances and challenges in desulfurization technologies
Type <scp>III</scp> porous ionic liquids via lipophilicity differences for enhanced oxidation catalysis
Lithium Selective Extraction from Zabuye Lake Brine by Task-Specific Ionic Liquids
Enhanced Rail Surface Defect Segmentation Using Polarization Imaging and Dual-Stream Feature Fusion
A real time segmentation network for lithium battery surface defect detection
Research on Malodor Component Identification Based on Sensor Array
Regulating the coordination environment of surface alumina on NiMo/Al2O3 to enhance ultra-deep hydrodesulfurization of diesel
Constructing interface chemical coupling S-scheme heterojunction MoO3-x@PPy for enhancing photocatalytic oxidative desulfurization performance: Adjusting LSPR effect via oxygen vacancy engineering
Tailoring Type III Porous Ionic Liquids for Enhanced Liquid‐Liquid Two‐Phase Catalysis
Understanding oxygen doping effects on boron nitride catalysis for efficient oxidative desulfurization of fuel oil
Fe3N nanoparticles confined in h-BN for Ultra-Deep oxidative desulfurization using molecular oxygen
Mechanochemical driven oxidative desulfurization of high-sulfur petroleum coke over [Bpy]PMoVn coupled with amide-based binary deep eutectic solvents
Carboxyl carbon nanotubes strengthened tailorable chitosan imprinted polymers for selective adsorption of dibenzothiophene in hydrogenated diesel
Mechanochemistry assisted oxidative desulfurization of high-sulfur petroleum coke over HPMo coupled binary deep eutectic solvent
Thermally Stable High‐Entropy Layered Double Hydroxides for Advanced Catalysis
Computational fluid dynamics and machine learning assisted Al-LDH adsorbent reactor design for lithium recovery from salt lakes
Modulating the Reaction Pathway of Ni<sub>2</sub>P/Al<sub>2</sub>O<sub>3</sub> by Introducing Different Noble Metals for Hydrodesulfurization of Diesel
Rapid, selectivity, and reversibility absorption of SO2 via purine-based deep eutectic solvents and thermodynamic analysis
High entropy materials for catalysis: A critical review of fundamental concepts and applications
3D-printed titanium-based ionic sieve monolithic adsorbent for selective lithium recovery from salt lakes
An ultra-stable high entropy metal nitride for aerobic oxidative desulfurization and source recovery of aromatic sulfides from fuel oils
3D printing of the multifunctional fixed-bed reactor and matched 3D-CeO2/ATP monolithic adsorbent for adsorption desulfurization
HyperSFormer: A Transformer-Based End-to-End Hyperspectral Image Classification Method for Crop Classification
3D printing of hierarchically porous lightweight activated carbon/alumina monolithic adsorbent for adsorptive desulfurization of hydrogenated diesel
Single Mo Atoms Stabilized on High-Entropy Perovskite Oxide: A Frontier for Aerobic Oxidative Desulfurization
Magnetically recyclable high-entropy metal oxide catalyst for aerobic catalytic oxidative desulfurization
High-entropy zeolitic imidazolate framework for efficient oxidative desulfurization of diesel fuel: Towards complete sulfur removal and valuable sulfone production