Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Materials science, Catalysis, Bifunctional, Graphene, Electrocatalyst, and Electrochemistry.
DFT‐Guided Design and Synthesis of Bipyridine‐Anchored Copper Single‐Atom Catalysts for Efficient Nitrate‐to‐Ammonia Electroreduction Across a Broad pH Range
Strategies for Sustainable Production of Hydrogen Peroxide via Oxygen Reduction Reaction: From Catalyst Design to Device Setup
PtFe Nanoalloys Supported on Fe‐Based Cubic Framework as Efficient Oxygen Reduction Electrocatalysts for Proton Exchange Membrane Fuel Cells
Edge‐hosted Atomic Co−N<sub>4</sub>Sites on Hierarchical Porous Carbon for Highly Selective Two‐electron Oxygen Reduction Reaction
Atomic Modulation and Structure Design of Fe−N<sub>4</sub> Modified Hollow Carbon Fibers with Encapsulated Ni Nanoparticles for Rechargeable Zn–Air Batteries
Edge‐hosted Atomic Co−N<sub>4</sub>Sites on Hierarchical Porous Carbon for Highly Selective Two‐electron Oxygen Reduction Reaction
Engineering Crystallinity and Oxygen Vacancies of Co(II) Oxide Nanosheets for High Performance and Robust Rechargeable Zn–Air Batteries
Atomically Thin Materials for Next-Generation Rechargeable Batteries
Robust Pseudocapacitive Sodium Cation Intercalation Induced by Cobalt Vacancies at Atomically Thin Co<sub>1−<i>x</i></sub>Se<sub>2</sub>/Graphene Heterostructure for Sodium‐Ion Batteries
Sustainable synthesis of low-cost nitrogen-doped-carbon coated Co3W3C@g-C3N4 composite photocatalyst for efficient hydrogen evolution
Engineering Antiperovskite Ni<sub>4</sub>N/VN Heterostructure with Improved Intrinsic Interfacial Charge Transfer as a Bifunctional Catalyst for Rechargeable Zinc–Air Batteries
Cation-vacancy induced Li+ intercalation pseudocapacitance at atomically thin heterointerface for high capacity and high power lithium-ion batteries
Robust Pseudocapacitive Sodium Cation Intercalation Induced by Cobalt Vacancies at Atomically Thin Co<sub>1−<i>x</i></sub>Se<sub>2</sub>/Graphene Heterostructure for Sodium‐Ion Batteries
Interface Engineering of CoS/CoO@N-Doped Graphene Nanocomposite for High-Performance Rechargeable Zn–Air Batteries
Cu Nanoclusters/FeN<sub>4</sub> Amorphous Composites with Dual Active Sites in N-Doped Graphene for High-Performance Zn–Air Batteries
Dual-active-sites design of CoNx anchored on zinc-coordinated nitrogen-codoped porous carbon with efficient oxygen catalysis for high-stable rechargeable zinc-air batteries
Engineering the electronic states of Ni<sub>3</sub>FeN<i>via</i>zinc ion regulation for promoting oxygen electrocatalysis in rechargeable Zn–air batteries
Rational design of sustainable transition metal-based bifunctional electrocatalysts for oxygen reduction and evolution reactions
Fe3C/Fe2O3 heterostructure embedded in N-doped graphene as a bifunctional catalyst for quasi-solid-state zinc–air batteries
NiCo alloy nanoparticles encapsulated in multi-dimensional N-doped carbon architecture as efficient bifunctional catalyst for rechargeable zinc-air batteries
Cobalt Oxide Nanoparticles/Nitrogen-Doped Graphene as the Highly Efficient Oxygen Reduction Electrocatalyst for Rechargeable Zinc-Air Batteries
Electrospun Fe, N co-doped porous carbon nanofibers with Fe4N species as a highly efficient oxygen reduction catalyst for rechargeable zinc-air batteries
A sensitive signal-on photoelectrochemical sensor for tetracycline determination using visible-light-driven flower-like CN/BiOBr composites
Boron and nitrogen co-doped graphene aerogels: Facile preparation, tunable doping contents and bifunctional oxygen electrocatalysis
Hollow cobalt oxide nanoparticles embedded in nitrogen-doped carbon nanosheets as an efficient bifunctional catalyst for Zn–air battery
α-Fe 2 O 3 nanoplates with superior electrochemical performance for lithium-ion batteries