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Energy Catalysis and In Situ Characterization Research Group
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Home
Team Leader
Team
研究员
副教授
特任副研究员
在站博士后
Energy Catalysis & In-situ Characterization Research Group
已出站博士后
已毕业研究生
Research Direction
Team Profile
Team Dynamics
Notification Notice
News and Information
Scientific Research
Research Projects
Research Field
Achievements in Scientific Research
Paper Publications
Patents
Published Books
Awards and Honours
Personnel Training
My Ablum
My Link
About Us
Paper Publications
Defect-Mediated Cu–S Pair Active Sites Modulating Proton Supply to Facilitate Overall CO2 Photoreduction with H2O,ACS Catalysis,2024,14(13):9734-9741.
Healing the structural defects of spinel MnFe2O4 to enhance the electrocatalytic activity for oxygen reduction reaction,Journal of Energy Chemistry,2024,9712-19.
Self-repaired Cathode Electrolyte Interphase to Stabilize the High-nickel Cathode Interface by a Sustained-release Multifunctional Electrolyte Additive,Chemical Engineering Journal,2024,488
Precise Modulation of Surface Lattice to Reinforce Structural Stability of High-Nickel Layered Oxide Cathode by Hafnium Gradient Doping,Energy Storage Materials,2024,
Neighbouring Synergy in High-density Single Ir Atoms on CoGaOOH for Efficient Alkaline Electrocatalytic Oxygen Evolution,Angewandte Chemie International Edition,2024,e202404418
Charge Trapping in Semiconductor Photocatalysts: A Time- and Space-Domain Perspective,Journal of the American Chemical Society,2024,146(13):8787-8799.
Promoting Photocatalytic H2 Evolution through Retarded Charge Trapping and Recombination by Continuously Distributed Defects in Methylammonium Lead Iodide Perovskite,Angew. Chem. Int. Ed.,2023,2023081401-6.
Edge‐Sharing Octahedrally Coordinated Ni-Fe Dual Active Sites on ZnFe2O4 for Photoelectrochemical Water Oxidation,Advanced Science,2023,1-9.
Amino-Functionalized Cu for Efficient Electrochemical Reduction of CO to Acetate,ACS Catal,2023,133532-3540.
Confinement synergy at the heterointerface for enhanced oxygen evolution,Nano Research,2023,
Synthesis of 1,2-propanediol by Electro-reduction of Formaldehyde with Oxygen-enriched Graphene,ChemNanoMat,2023,
Remote Synergy between Heterogeneous Single Atoms and Clusters for Enhanced Oxygen Evolution,Nano Lett,2023,233309−3316.
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