Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Catalysis, Electrochemistry, Tafel equation, Chemical engineering, and Overpotential.
Bio-nano selenium fertilizer improves the yield, quality, and organic selenium content in rice
Ni<sub>0.25</sub>Cu<sub>0.5</sub>Sn<sub>0.25</sub> Nanometallic Glasses As Highly Efficient Catalyst for Electrochemical Nitrate Reduction to Ammonia
The effect of laser shock peening with and without coating on microstructure and electrochemical corrosion behavior of AZ31b magnesium alloy
Ultra-thin N-doped-graphene encapsulated Ni nanoparticles coupled with MoO<sub>2</sub> nanosheets for highly efficient water splitting at large current density
Contributions of oxygen vacancies to the hydrogen evolution catalytic activity of tungsten oxides
Enhancement of oxygen reduction activity and stability via introducing acid-resistant refractory Mo and regulating the near-surface Pt content
Metal–Support Interactions in a Molybdenum Oxide Anchored PtNi Alloy for Improving Oxygen Reduction Activity
Bifunctional catalysts for overall water splitting: CoNi oxyhydroxide nanosheets electrodeposited on titanium sheets
Worm-like S-doped RhNi alloys as highly efficient electrocatalysts for hydrogen evolution reaction
Oxygen Reduction Reaction over PtFeM (M = Mo, V, W) Alloy Electrocatalysts: Role of the Compressive Strain Effect on Pt
Cu<sub>2</sub>S‐Cu<sub>3</sub>P Nanowire Arrays Self‐Supported on Copper Foam as Boosting Electrocatalysts for Hydrogen Evolution
Enhanced hydrogen evolution activity over microwave-assisted functionalized 3D structured graphene anchoring FeP nanoparticles
Manganese oxide(Ⅲ)/carbon hybrids with interesting morphologies as improved active materials for supercapacitors
Carbon-Encapsulated Electrocatalysts for the Hydrogen Evolution Reaction
Carbon‐Encapsulated WO<i><sub>x</sub></i> Hybrids as Efficient Catalysts for Hydrogen Evolution
One-pot synthesized boron-doped RhFe alloy with enhanced catalytic performance for hydrogen evolution reaction
P-doped CNTs encapsulated nickel hybrids with flower-like structure as efficient catalysts for hydrogen evolution reaction
Remarkably efficient PtRh alloyed with nanoscale WC for hydrogen evolution in alkaline solution
Tungsten nitride decorated CNTs as efficient hybrid supports for PtRh alloys in electrocatalytic ethanol oxidation