已发表成果:
WOK 论文 122 篇;中文核心 6 篇;
Phase and interface engineering of nickel carbide nanobranches for efficient hydrogen oxidation catalysis
A newly-explored Pd-based nanocrystal for the pH-universal electrosynthesis of H2O2
Subnanometer high-entropy alloy nanowires enable remarkable hydrogen oxidation catalysis
Coordination tailoring of Cu single sites on C3N4 realizes selective CO2 hydrogenation at low temperature
Iridium metallene oxide for acidic oxygen evolution catalysis
Tunable one-dimensional inorganic perovskite nanomeshes library for water splitting
A wide range of CO : H-2 syngas ratios enabled by a tellurization-induced amorphous telluride-palladium surface
A Large-Scalable, Surfactant-Free, and Ultrastable Ru-Doped Pt3Co Oxygen Reduction Catalyst
Determination of the crystal field and nature of x-ray linear dichroism for Co-O with local octahedral, tetrahedral, and tetragonal symmetries
A chemical etching strategy to improve and stabilize RuO2-based nanoassemblies for acidic oxygen evolution
High-performance diluted nickel nanoclusters decorating ruthenium nanowires for pH-universal overall water splitting
Progress in Synthesis and Electrocatalysis of Two-Dimensional Metal Nanomaterials
Efficient Direct H2O2 Synthesis Enabled by PdPb Nanorings via Inhibiting the O-O Bond Cleavage in O(2 )and H2O2
Selective Ethanol Oxidation Reaction at the Rh-SnO2 Interface
Grain-Boundary-Engineered La2CuO4 Perovskite Nanobamboos for Efficient CO2 Reduction Reaction
Synergized Cu/Pb Core/Shell Electrocatalyst for High-Efficiency CO2 Reduction to C2+ Liquids
Face-centered cubic structured RuCu hollow urchin-like nanospheres enable remarkable hydrogen evolution catalysis
Site-Specified Two-Dimensional Heterojunction of Pt Nanoparticles/Metal-Organic Frameworks for Enhanced Hydrogen Evolution
Recent Progress in Advanced Electrocatalyst Design for Acidic Oxygen Evolution Reaction
An Efficient Interfacial Synthesis of Two-Dimensional Metal-Organic Framework Nanosheets for Electrochemical Hydrogen Peroxide Production
Interface Confinement in Metal Nanosheet for High-Efficiency Semi-Hydrogenation of Alkynes
Phase-Controlled Synthesis of Pd-Se Nanocrystals for Phase-Dependent Oxygen Reduction Catalysis
Boron-doped amorphous iridium oxide with ultrahigh mass activity for acidic oxygen evolution reaction
Phase and structure modulating of bimetallic Cu/In nanoparticles realizes efficient electrosynthesis of syngas with wide CO/H-2 ratios
A Top-Down Strategy to Realize Surface Reconstruction of Small-Sized Platinum-Based Nanoparticles for Selective Hydrogenation
Electronic Coupling of Single Atom and FePS3 Boosts Water Electrolysis
Highly Surface-Distorted Pt Superstructures for Multifunctional Electrocatalysis
One-dimensional iridium-based nanowires for efficient water electrooxidation and beyond
Compressive Strain in N-Doped Palladium/Amorphous-Cobalt (II) Interface Facilitates Alkaline Hydrogen Evolution
Atomically Isolated Rh Sites within Highly Branched Rh2Sb Nanostructures Enhance Bifunctional Hydrogen Electrocatalysis
Compensating Electronic Effect Enables Fast Site-to-Site Electron Transfer over Ultrathin RuMn Nanosheet Branches toward Highly Electroactive and Stable Water Splitting
二维金属纳米材料的合成及电催化应用的研究进展
高等学校化学学报,0251-0790,2021-02-10.