Area of research
Materials Chemistry · Mechanical Engineering
Research interest
Research focused on Flue-gas desulfurization and Catalysis, with related work in Polyoxometalate, Ionic liquid, Dibenzothiophene. Notable publications include 'Review on oxidative desulfurization of fuel by supported heteropolyacid catalysts', 'Template method for a hybrid catalyst material POM@MOF-199 anchored on MCM-41: Highly oxidative desulfurization of DBT under molecular oxygen', and 'Oxidative desulfurization of model fuel in the presence of molecular oxygen over polyoxometalate based catalysts supported on carbon nanotubes'.
Biomimetic supported polyoxometalate structures designed and its applications for the ultra-deep oxidative desulfurization of fuels
Peroxomolybdate@MOFs as effective catalysts for oxidative desulfurization of fuels: correlation between MOF structure and catalytic activity
Structure and electrochemical performance of LiFePO4 cathode materials modified with carbon coating and metal doping
Metal–organic framework (UIO-66-NH2)-encapsulated peroxophosphotungstate (PW4) loaded on graphene oxide (GO) as catalyst for desulfurization of fuel
Investigation on pulse-vibration electrochemical machining of parallel micro-grooves
Photochemical reaction kinetics research over substituted metal phthalocyanine/La0.8Ce0.2NiO3 catalysts during the desulfurization process of dibenzothiophenes
A simple desulfurization process to achieve high efficiency, sustainability and cost-effectivity via peroxotungstate catalyst
Vanadium-substituted heteropolyacids (H<sub>3+m</sub>PW<sub>12−m</sub>V<sub>m</sub>O<sub>40</sub>) encapsulated in Fe<sub>3</sub>O<sub>4</sub>@UiO-66 magnetic core–shell microspheres as excellent catalysts for oxidative desulfurization under oxygen
Investigation of inner-jet electrochemical face grinding of thin-walled rotational parts
Doping Kinetics and Structural Studies for Lithium‐rich Mn‐based Lithium Ion Cathode Materials
Heteropolyacid supported MOF fibers for oxidative desulfurization of fuel
Deep desulfurization of fuels using supported ionic liquid-polyoxometalate hybrid as catalyst: A comparison of different types of ionic liquids
Highly effective oxidative desulfurization with magnetic MOF supported W-MoO3 catalyst under oxygen as oxidant
Synthesis and properties of zwitterionic gemini surfactants for enhancing oil recovery
Magnetic-heteropolyacid mesoporous catalysts for deep oxidative desulfurization of fuel: The influence on the amount of APES used
Deep oxidative desulfurization of model fuels catalyzed by polyoxometalates anchored on amine-functionalized ceria doped MCM-41 with molecular oxygen
An Effective Hybrid Heterogeneous Catalyst to Desulfurize Diesel: Peroxotungstate@Metal–Organic Framework
Support ionic liquid-heteropolyacid hybrid on mesoporous carbon aerogel with a high surface area for highly efficient desulfurization under mild conditions
Review on oxidative desulfurization of fuel by supported heteropolyacid catalysts
Design and synthesis heteropolyacid modified mesoporous hybrid material CNTs@MOF-199 catalyst by different methods for extraction-oxidation desulfurization of model diesel
Oxidative desulfurization of model fuel in the presence of molecular oxygen over polyoxometalate based catalysts supported on carbon nanotubes
Oxidative desulfurization process of model fuel under molecular oxygen by polyoxometalate loaded in hybrid material CNTs@MOF-199 as catalyst
Different supports of modified heteropolyacid for ultra-deep oxidative desulfurization: A newly easy shaped catalyst and the DFT cluster model study
Cobalt tetrapyridinoporphyrazine nanoparticulates anchored on carbon nanotubes for long-voltage Li/SOCl2 batteries
Metal modified heteropolyacid incorporated into porous materials for a highly oxidative desulfurization of DBT under molecular oxygen
In situ hydrothermal preparation and photocatalytic desulfurization performance of metallophthalocyanine sensitized SnO2
Enhanced oil recovery from high‐salinity reservoirs by cationic gemini surfactants
Binuclear metal phthalocyanines bonding with carbon nanotubes as catalyst for the Li/SOCl 2 battery
Template method for a hybrid catalyst material POM@MOF-199 anchored on MCM-41: Highly oxidative desulfurization of DBT under molecular oxygen
Two actinide-organic frameworks constructed by a tripodal flexible ligand: Occurrence of infinite {(UO2)O2(OH)3}4n and hexanuclear {Th6O4(OH)4} motifs