Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Electrocatalyst, Materials science, Hydroxide, Overpotential, Phosphide, and Detection limit.
Homogeneous pseudoamorphous metal phosphide clusters for ultra stable hydrogen generation by water electrolysis at industrial current density
Construction of an electrochemical immunosensor based on the OER signal of Au@CoFe-(oxy)hydroxide for ultrasensitive detection of CEA
Construction of an Electrochemical Immunosensor Based on the OER Signal of Au@CoFe - (Oxy)Hydroxide for Ultrasensitive Detection of CEA
Mo-doping-assisted electrochemical transformation to generate CoFe LDH as the highly efficient electrocatalyst for overall water splitting
CoFe-(oxy)hydroxide as a novel electrocatalytic tag in immunosensing for ultra-sensitive detection of procalcitonin based on the oxygen evolution reaction
Homogeneous Pseudoamorphous Metal Phosphide Clusters for Ultra Stable Hydrogen Generation by Water Electrolysis at Industrial Current Density
CoFe-(Oxy)Hydroxide as a Novel Electrocatalytic Tag in Immunosensing for Ultra-Sensitive Detection of Procalcitonin Based on the Oxygen Evolution Reaction
Homogeneous Pseudoamorphous Metal Phosphide Clusters for Ultra Stable Hydrogen Generation by Water Electrolysis at Industrial Current Density
High-Density Defects Activating Fe-Doped Molybdenum Sulfide@N-Doped Carbon Heterostructures for Efficient Electrochemical Hydrogen Evolution
High Active and Durable Vanadium Sulfide Multilayer Structure Featuring Rich Hole Defects Constructed for Accelerated Hydrogen Evolution Reaction