Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research focused on Electrocatalyst and Overpotential, with related work in Oxygen evolution, Electrode, Graphene. Notable publications include 'Electroless Plating of Highly Efficient Bifunctional Boride‐Based Electrodes toward Practical Overall Water Splitting', 'Fabrication of practical catalytic electrodes using insulating and eco-friendly substrates for overall water splitting', and 'Facile hydrothermal synthesis of mesoporous nickel oxide/reduced graphene oxide composites for high performance electrochemical supercapacitor'.
Surface Corrosion‐Resistant and Multi‐Scenario MoNiP Electrode for Efficient Industrial‐Scale Seawater Splitting
Synergistic Coupling of Nickel Boride with Ru Cluster as a Highly Active Multifunctional Electrocatalyst for Overall Water Splitting and Glucose Electrolysis
Electroless Plating of Transition Metal Boride with High Boron Content as Superior HER Electrocatalyst
Fabrication of practical catalytic electrodes using insulating and eco-friendly substrates for overall water splitting
Surface‐Activated Amorphous Iron Borides (Fe<i><sub>x</sub></i>B) as Efficient Electrocatalysts for Oxygen Evolution Reaction
Electroless Plating of Highly Efficient Bifunctional Boride‐Based Electrodes toward Practical Overall Water Splitting
Performance of Surface‐Oxidized Ni<sub>3</sub>B, Ni<sub>2</sub>B, and NiB<sub>2</sub> Electrocatalysts for Overall Water Splitting
Mesoporous composite nickel cobalt oxide/graphene oxide synthesized via a template-assistant co-precipitation route as electrode material for supercapacitors
Facile hydrothermal synthesis of mesoporous nickel oxide/reduced graphene oxide composites for high performance electrochemical supercapacitor