Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Catalysis, Sulfur, Carbon fibers, Chemical engineering, and Cathode.
SnSe/MoS <sub>2</sub> Van der Waals Heterojunction for Ultrasensitive and Broadband Photodetection
Single Metal‐Embedded Nitrogen Heterocycle Aromatic Catalysts for Efficient and Selective Two‐Electron Water Electrolysis Toward Hydrogen Peroxide
Recycling spent ternary cathodes into multi-heterogeneous Ni4N/Co5.47N/MnO composite catalysts enable efficient oxygen evolution reaction
Ga5Mg2 alloy solid electrolyte interphase in-situ formed in [Mg(DME)3][GaCl4]2/PYR14TFSI/DME electrolyte enables high-performance rechargeable magnesium batteries
Bimetallic Bi–Sn micro-/nanospheres@cellulose nanocrystal derived carbon aerogel composite anode for high-performance Mg-ion batteries
MoS2 confined within CMK-3 as multifunctional nanoreactor towards high-performance Li–S battery
Toward High‐Performance Mg/S Batteries with M4‐Assisted Mg(AlCl<sub>4</sub>)<sub>2</sub>/PYR14TFSI/DME Electrolyte and MoS<sub>2</sub>@CMK/S Cathode
Implanting Single Zn Atoms Coupled with Metallic Co Nanoparticles into Porous Carbon Nanosheets Grafted with Carbon Nanotubes for High‐Performance Lithium‐Sulfur Batteries
Sequential Phase Conversion‐Induced Phosphides Heteronanorod Arrays for Superior Hydrogen Evolution Performance to Pt in Wide pH Media
Alloying Co Species into Ordered and Interconnected Macroporous Carbon Polyhedra for Efficient Oxygen Reduction Reaction in Rechargeable Zinc–Air Batteries
Inner Co Synergizing Outer Ru Supported on Carbon Nanotubes for Efficient pH-Universal Hydrogen Evolution Catalysis
Charge pumping enabling Co–NC to outperform benchmark Pt catalyst for pH-universal hydrogen evolution reaction
Highly efficient overall-water splitting enabled via grafting boron-inserted Fe-Ni solid solution nanosheets onto unconventional skeleton
Porous Carbon Architecture Assembled by Cross-Linked Carbon Leaves with Implanted Atomic Cobalt for High-Performance Li–S Batteries
Nano-size NiS particles anchored on nitrogen-doped reduced graphene oxide for superior sodium storage
Anion-cation co-substitution activation of spinel CoMoO4 for efficient oxygen evolution reaction
Three-dimensional graphene network-supported Co, N-codoped porous carbon nanocages as free-standing polysulfides mediator for lithium-sulfur batteries
3D urchin-like architectures assembled by MnS nanorods encapsulated in N-doped carbon tubes for superior lithium storage capability
Embedding heterostructured MnS/Co<sub>1−x</sub>S nanoparticles in porous carbon/graphene for superior lithium storage