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[11]wanxueying,赵颐临,李逸凡,liudong,xiongyujie.Tailoring Oxygen Vacancies with Atomically Dispersed Cu Sites for Stable and Efficient Photothermal CO2 Conversion.Angewandte Chemie International Edition,2025,64(30):e202505244.
[12]马军,liudong,Long Ran,xiongyujie.Modulating Chloride Adsorption for Efficient Chloride-Mediated Methane Conversion over Tungsten Oxide Photoanode.ACS Catalysis,2025,15(8):6058-6066.
[13]李睿,张旺,刘东,潘响亮.Interfacial Microenvironment Modulation Enhancing Electron Transfer between Quasi-MOFs and Defective Semiconductor Arrays for Enhanced Photocatalytic Sterilization.ACS Applied Materials & Interfaces,2025,17(14):21335-21346.
[14]wangkanghong,刘东,xiongyujie.Stability of Photoelectrochemical Cells Based on Colloidal Quantum Dots.Chemical Society Reviews,2025,543513-3534.
[15]zhaiguangyao,刘东,xiongyujie.Direct Photocatalytic Oxidation of Methane to Formic Acid with High Selectivity via a Concerted Proton–Electron Transfer Process.Journal of the American Chemical Society,2025,147(3):2444-2454.
[16]李逸凡,刘东.崔义.Activity Enhancement of Molybdenum Carbide in Alkaline Hydrogen Evolution Reaction through Oxidation-Gradient Modulation.ACS Catalysis,2024,14(22):16712-16722.
[17]Manipulating the Electronic Properties of An Fe Single Atom Catalyst via Secondary Coordination Sphere Engineering to Provide Enhanced Oxygen Electrocatalytic Activity in Zinc‐Air Batteries.Advanced Materials,2024,36(44):2410121.
[18]zhaiguangyao,刘东,xiongyujie.Highly Efficient, Selective, and Stable Photocatalytic Methane Coupling to Ethane Enabled by Lattice Oxygen Looping.Science Advances,2024,10(26):eado4390.
[19]胡卫胜,刘东,李本侠.Enhanced Photocatalytic CO2 Reduction to CH4 via Restorable Surface Plasmon and Pdn–Wδ+ Synergetic Sites.Inorganic Chemistry Frontiers,2024,114576-4589.
[20]Asymmetric Cu(I)-W Dual‐Atomic Sites Enable C-C Coupling for Selective Photocatalytic CO2 Reduction to C2H4.Advanced Science,2024,11(28):2401933.
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