Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research interests include Catalysis, Materials science, Electrocatalyst, Chemistry, Chemical engineering, and Electrochemistry.
Coupling Co-Ni phosphides for energy-saving alkaline seawater splitting
Addressing Challenges and Enhancing Performance of Manganese-based Cathode Materials in Aqueous Zinc-Ion Batteries
Carbon fiber confined mixed Ni‐based crystal phases with interfacial charge redistribution induced by high bond polarity for electrochemical urea‐assisted hydrogen generation
FeCu bimetallic clusters for efficient urea production via coupling reduction of carbon dioxide and nitrate
Step-by-step enhancing oxygen evolution ability of CoFe2O4 by hybrid structure engineering and fluorine doping
Fe site regulation and activity deciphering by selective phase transformation in the confined FeNi nanoparticles for oxygen evolution reaction
Atomic layer deposition of Pt nanoparticles grown onto 3D B-doped graphene as an efficient ultra-low Pt loading catalyst layer for PEMFC
Recent progress in electrochemical synthesis of urea through C-N coupling reactions
Electrocatalytic nitrate-to-ammonia conversion on CoO/CuO nanoarrays using Zn–nitrate batteries
Au nanoclusters anchored on TiO2 nanosheets for high-efficiency electroreduction of nitrate to ammonia
Advanced strategies for solid electrolyte interface design with MOF materials
Bifunctional bimetallic oxide nanowires for high-efficiency electrosynthesis of 2,5-furandicarboxylic acid and ammonia
Fe nanoparticles confined by multiple-heteroatom-doped carbon frameworks for aqueous Zn-air battery driving CO2 electrolysis
Dealloyed NiTiZrAg as an efficient electrocatalyst for hydrogen evolution in alkaline seawater
Efficient and Stable pH‐Universal Water Electrolysis Catalyzed by N‐Doped Hollow Carbon Confined RuIrO<sub>x</sub> Nanocrystals
Metal Phosphorous Chalcogenide: A Promising Material for Advanced Energy Storage Systems
Efficient catalyst layer with ultra-low Pt loading for proton exchange membrane fuel cell
Nb<sub>2</sub>AlC MAX Nanosheets Supported Ru Nanocrystals as Efficient Catalysts for Boosting pH‐Universal Hydrogen Production
Zeolitic imidazolate framework-67 derived ultra-small CoP particles incorporated into N-doped carbon nanofiber as efficient bifunctional catalysts for oxygen reaction
Fe2P as a novel efficient catalyst promoter in Pd/C system for formic acid electro-oxidation in fuel cells reaction
Active sites contribution from nanostructured interface of palladium and cerium oxide with enhanced catalytic performance for alcohols oxidation in alkaline solution
Pt–CoP/C as an alternative PtRu/C catalyst for direct methanol fuel cells
Nanostructured palladium catalyst poisoning depressed by cobalt phosphide in the electro-oxidation of formic acid for fuel cells