Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Materials science, Catalysis, Overpotential, Water splitting, Doping, and Tafel equation.
A broad-spectrum gas sensor based on correlated two-dimensional electron gas
PGM-free metal oxide nanoarray forests for water-promoted low-temperature soot oxidation
Interfacial sp C–O–Mo Hybridization Originated High-Current Density Hydrogen Evolution
Elucidating the Nature of the Cu(I) Active Site in CuO/TiO<sub>2</sub> for Excellent Low-Temperature CO Oxidation
Oxygen Vacancy Promoted O<sub>2</sub> Activation over Perovskite Oxide for Low-Temperature CO Oxidation
Bimetallic Nickel Cobalt Sulfide as Efficient Electrocatalyst for Zn–Air Battery and Water Splitting
Electronic structure modulation of NiS<sub>2</sub> by transition metal doping for accelerating the hydrogen evolution reaction
Hollow Mo-doped CoP nanoarrays for efficient overall water splitting
In Situ Grown Epitaxial Heterojunction Exhibits High‐Performance Electrocatalytic Water Splitting
Self‐Powered Water‐Splitting Devices by Core–Shell NiFe@N‐Graphite‐Based Zn–Air Batteries
Boosting catalytic propane oxidation over PGM-free Co3O4 nanocrystal aggregates through chemical leaching: A comparative study with Pt and Pd based catalysts
Dual‐Native Vacancy Activated Basal Plane and Conductivity of MoSe<sub>2</sub> with High‐Efficiency Hydrogen Evolution Reaction
Transition-metal-doped NiSe2 nanosheets towards efficient hydrogen evolution reactions
Ar<sup>2+</sup> Beam Irradiation-Induced Multivancancies in MoSe<sub>2</sub> Nanosheet for Enhanced Electrochemical Hydrogen Evolution
Activating and Optimizing Activity of CoS<sub>2</sub> for Hydrogen Evolution Reaction through the Synergic Effect of N Dopants and S Vacancies
Enhanced oxygen evolution reaction by Co-O-C bonds in rationally designed Co3O4/graphene nanocomposites
Copper dopants improved the hydrogen evolution activity of earth-abundant cobalt pyrite catalysts by activating the electrocatalytically inert sulfur sites
Dual‐Functional N Dopants in Edges and Basal Plane of MoS<sub>2</sub> Nanosheets Toward Efficient and Durable Hydrogen Evolution
Metallic Ni<sub>3</sub>N nanosheets with exposed active surface sites for efficient hydrogen evolution
Activating Basal Planes and S‐Terminated Edges of MoS<sub>2</sub> toward More Efficient Hydrogen Evolution
Synthesis of Ferromagnetic Fe<sub>0.6</sub>Mn<sub>0.4</sub>O Nanoflowers as a New Class of Magnetic Theranostic Platform for In Vivo T<sub>1</sub>‐T<sub>2</sub> Dual‐Mode Magnetic Resonance Imaging and Magnetic Hyperthermia Therapy
Extremely low frequency alternating magnetic field–triggered and MRI–traced drug delivery by optimized magnetic zeolitic imidazolate framework-90 nanoparticles
Low temperature propane oxidation over Co3O4 based nano-array catalysts: Ni dopant effect, reaction mechanism and structural stability
Size dependent magnetic hyperthermia of octahedral Fe<sub>3</sub>O<sub>4</sub> nanoparticles
Nanoscale Magnetization Reversal Caused by Electric Field-Induced Ion Migration and Redistribution in Cobalt Ferrite Thin Films
Orientation Mediated Enhancement on Magnetic Hyperthermia of Fe<sub>3</sub>O<sub>4</sub> Nanodisc
Synthesis of nonstoichiometric zinc ferrite nanoparticles with extraordinary room temperature magnetism and their diverse applications