Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Catalysis, Tafel equation, Overpotential, Oxygen evolution, and Oxide.
The intricate microbial–gut–brain axis in Alzheimer's disease: a review of microbiota-targeted strategies
Molten salt-mediated electrosynthesis of MoS<sub>2</sub> nanosheet-supported Rh nanoclusters for highly efficient electrocatalytic hydrogen evolution
Nanofluidic-enhanced high-mass-loading electrodes for energy-dense and high-rate lithium–sulfur batteries
Glial cell nutrient sensing: mechanisms of nutrients regulating Alzheimer’s pathogenesis and precision intervention
Ruthenium-nickel-cobalt alloy nanoparticles embedded in hollow carbon microtubes as a bifunctional mosaic catalyst for overall water splitting
Coupling of Ru nanoclusters decorated mixed-phase (1T and 2H) MoSe2 on biomass-derived carbon substrate for advanced hydrogen evolution reaction
Free-Standing P-Doped NiSe<sub>2</sub>/MoSe<sub>2</sub> Catalyst for Efficient Hydrogen Evolution in Acidic and Alkaline Media
Structural Variations of Metal Oxide‐Based Electrocatalysts for Oxygen Evolution Reaction
Vertically oriented Ni-doped MoS2 nanosheets supported on hollow carbon microtubes for enhanced hydrogen evolution reaction and water splitting
Construction of reduced graphene oxide coupled with CoSe2-MoSe2 heterostructure for enhanced electrocatalytic hydrogen production
Hydrangea-like sulfide NiFe layered double hydroxides grown on an undulate nickel framework as bifunctional electrocatalysts for overall water splitting
Enhanced polysulfide conversion through metal oxide-support interaction in MnOx/MXene
Iron molybdenum selenide supported on reduced graphene oxide as an efficient hydrogen electrocatalyst in acidic and alkaline media
Tremella-like manganese dioxide complex (Fe,Ni)3S4 hybrid catalyst for highly efficient oxygen evolution reaction
Magnesium-doped Na2FeP2O7 cathode materials for sodium-ion battery with enhanced cycling stability and rate capability
Layer Stacked Iodine and Phosphorus Co‐doped C<sub>3</sub>N<sub>4</sub> for Enhanced Visible‐Light Photocatalytic Hydrogen Evolution
Hierarchical MoS<sub>2</sub>@MoP core–shell heterojunction electrocatalysts for efficient hydrogen evolution reaction over a broad pH range
A novel “dual-potential” electrochemiluminescence aptasensor array using CdS quantum dots and luminol-gold nanoparticles as labels for simultaneous detection of malachite green and chloramphenicol