Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Materials science, Catalysis, Electrocatalyst, Lithium (medication), Anode, and Chemical engineering.
Ge–Si/C Nanofiber Composite with Enhanced Cyclic Stability and Rate Capability for Lithium-Ion Batteries
Deciphering d–sp Orbital Interaction in MnSe<sub>2</sub>–CoSe<sub>2</sub> with a Built-in Electric Field toward Enhanced Water and Seawater Oxidation Electrocatalysis
d‐Band Optimized Hydrogen Adsorption and Dynamic Reconstruction‐Accelerated Oxygen Evolution on RuS <sub>2</sub> /(FeNi)S <sub>1.03</sub> Heterointerfaces for Water/Seawater Splitting
Nano‐Au‐decorated hierarchical porous cobalt sulfide derived from ZIF‐67 toward optimized oxygen evolution catalysis: Important roles of microstructures and electronic modulation
N/S‐Doped Hierarchical Porous Bamboo Carbon Fibers with Ultra‐Large Surface Area and Highly Exposed Active Sites for Flexible Zinc‐Air Battery<sup>†</sup>
A pore‐confined strategy for synthesizing CoFe nanoparticles in mesoporous biocarbon matrix as advanced bifunctional oxygen electrocatalyst for zinc–air battery
Self-adaptive reconstructed high-entropy sulfide catalysts with optimized surface electronic structure for lithium-oxygen batteries
Co2P/CoP embedded in N, P, S triply-doped hollow carbon towards enhanced oxygen electrocatalysis
Modulating Coordination of Iron Atom Clusters on N,P,S Triply‐Doped Hollow Carbon Support towards Enhanced Electrocatalytic Oxygen Reduction
Double carbon modified CoS2/NiS2 as anode material for efficient lithium storage performance
F127 assisted fabrication of Ge/rGO/CNTs nanocomposites with three-dimensional network structure for efficient lithium storage
F127/PDA dual-assisted fabricating high dispersed Ge nanoparticles /N-doped porous carbon composites with efficient lithium storage
Synergistic dual atomic sites with localized electronic modulation enable high-performance lithium–oxygen batteries
KOH-assisted aqueous synthesis of bimetallic metal-organic frameworks and their derived selenide composites for efficient lithium storage
Controllable fabrication of FeCoS4 nanoparticles/S-doped bowl-shaped hollow carbon as efficient lithium storage anode
Suppressing polysulfide shuttle in lithium-sulfur batteries using CNTs/C3N4/S cathodes
Controllable Solid-Phase Fabrication of an Fe<sub>2</sub>O<sub>3</sub>/Fe<sub>5</sub>C<sub>2</sub>/Fe–N–C Electrocatalyst toward Optimizing the Oxygen Reduction Reaction in Zinc–Air Batteries
A General Self‐Assembly Induced Strategy for Synthesizing 2D Ultrathin Cobalt‐Based Compounds Toward Optimizing Hydrogen Evolution Catalysis
Ru clusters anchored on Magnéli phase Ti4O7 nanofibers enables flexible and highly efficient Li–O2 batteries
KOH-assisted aqueous synthesis of ZIF-67 with high-yield and its derived cobalt selenide/carbon composites for high-performance Li-ion batteries
Electronic structure modulation of Ru/W20O58 catalyst via interfacial Ru–O–W bridging bond for high-performance Li–O2 batteries
Tunable dual cationic redox couples boost bifunctional oxygen electrocatalysis for long-term rechargeable Zn-air batteries
An altered nanoemulsion assembly strategy for in-situ synthesis of Co2P/NP-C nanospheres as advanced oxygen reduction electrocatalyst for zinc-air batteries
Intercalating assembly of NiFe LDH nanosheets/CNTs composite as high-performance electrocatalyst for oxygen evolution reaction
Ultrafine CoO nanoparticles and Co-N-C lamellae supported on mesoporous carbon for efficient electrocatalysis of oxygen reduction in zinc-air batteries
Defected molybdenum disulfide catalyst engineered by nitrogen doping for advanced lithium–oxygen battery