Area of research
Mechanical Engineering · Materials Chemistry
Research interest
Research interests include Adsorption, Boron nitride, Flue-gas desulfurization, Materials science, Chemistry, and Ionic liquid.
Portable smartphone-integrated AuAg nanoclusters electrospun membranes for multivariate fluorescent sensing of Hg2+, Cu2+ and l-histidine in water and food samples
Heterogeneous oxidative desulfurization of fuels using amphiphilic mesoporous phosphomolybdate-based poly(ionic liquid) over a wide temperature range
Design and Synthesis of Amphiphilic Catalyst [C<sub>16</sub>mim]<sub>5</sub>VW<sub>12</sub>O<sub>40</sub>Br and Its Application in Deep Desulfurization with Superior Cyclability at Room Temperature
Tungstovanadate-Based Ionic Liquid Catalyst [C<sub>2</sub>(MIM)<sub>2</sub>]<sub>2</sub>VW<sub>12</sub>O<sub>40</sub> Used in Deep Desulfurization for Ultraclean Fuel with Simultaneous Recovery of the Sulfone Product
Porous phosphomolybdate-based poly(ionic liquid) hybrids with reversible water absorption for enhancement of oxidative desulfurization
Graphene-like BN@SiO2 nanocomposites as efficient sorbents for solid-phase extraction of Rhodamine B and Rhodamine 6G from food samples
Insights into the synergistic effect of multi-walled carbon nanotube decorated Mo-doped CoP<sub>2</sub> hybrid electrocatalysts toward efficient and durable overall water splitting
NiCo alloy nanoparticles encapsulated in multi-dimensional N-doped carbon architecture as efficient bifunctional catalyst for rechargeable zinc-air batteries
Gas-assisted exfoliation of boron nitride nanosheets enhancing adsorption performance
Silver Nanoparticle-Decorated Boron Nitride with Tunable Electronic Properties for Enhancement of Adsorption Performance
Boron defect engineering in boron nitride nanosheets with improved adsorptive desulfurization performance
Fabrication of pyrimidine/g-C3N4 nanocomposites for efficient photocatalytic activity under visible-light illumination
Advanced Overlap Adsorption Model of Few-Layer Boron Nitride for Aromatic Organic Pollutants
Tuning the Chemical Hardness of Boron Nitride Nanosheets by Doping Carbon for Enhanced Adsorption Capacity
Green aqueous biphasic systems containing deep eutectic solvents and sodium salts for the extraction of protein
Metal‐free boron nitride adsorbent for ultra‐deep desulfurization
A comparative study of the extractive desulfurization mechanism by Cu(II) and Zn-based imidazolium ionic liquids
Tuning electronic properties of boron nitride nanoplate via doping carbon for enhanced adsorptive performance
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