Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Polysulfide and Lithium (medication), with related work in Nanoparticle, Nanotechnology, Bridging (networking). Notable publications include 'Lewis Acidic/Basic Oxides Modulated Cu 3 P for Efficient Lithium Polysulfide Electrocatalytic Conversion', 'Design Frontiers of High‐Entropy Materials for Advanced Electrocatalysis', and 'Functional carbon-based covalent bridging bonds unlocking superior sodium-ion storage'.
Lewis Acidic/Basic Oxides Modulated Cu <sub>3</sub> P for Efficient Lithium Polysulfide Electrocatalytic Conversion
Design Frontiers of High‐Entropy Materials for Advanced Electrocatalysis
High-entropy metal phosphide nanoparticles for accelerated lithium polysulfide conversion
Functional carbon-based covalent bridging bonds unlocking superior sodium-ion storage
Chemically bonded Co2P-Cu3P heterostructure nanoparticles on porous carbon framework as efficient hydrogen evolution/oxidation electrocatalysts
Sulfurization of transition metal inorganic electrocatalysts in Li–S batteries