刘东
个人信息Personal Information
特任教授
博士生导师
硕士生导师
办公地点:亲民楼208
学位:博士
毕业院校:图书馆VIP
学科:纳米科学与工程
化学
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Web of Science ResearcherID.
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翟广耀,刘东,张宁,熊宇杰.Highly efficient, selective, and stable photocatalytic methane coupling to ethane enabled by lattice oxygen looping.Science Advances,2024,10(26):eado4390.
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万雪颖,刘东,熊宇杰.A Nonmetallic Plasmonic Catalyst for Photothermal CO2 Flow Conversion with High Activity, Selectivity and Durability.Nature Communications,2024,151273.
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马军,刘东,熊宇杰.Tuning the selectivity of photothermal CO2 hydrogenation through photo-induced interaction between Ni nanoparticles and TiO2.Applied Catalysis B: Environment and Energy,2023,
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刘悟雯,刘东.Immobilizing Graphitic Carbon Nitride on Porous Silica Via Hydrogen Bonds for Photocatalytic Flow Synthesis of Azoxybenzene.Chemical Engineering Journal,2023,476146730.
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马军,龚万兵,刘东,熊宇杰.Rational Design of N‐doped Carbon Coated Cobalt Nanoparticles for Highly Efficient and Durable Photothermal CO2 Conversion.Advanced Materials,2023,35(42):2302537.
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Bridging Au nanoclusters with ultrathin LDH nanosheets via ligands for enhanced charge transfer in photocatalytic CO2 reduction.Applied Catalysis B: Environmental,2023,
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Sustainable methane utilization technology via photocatalytic halogenation with alkali halides.Nature Communications,2023,
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马军,熊宇杰,刘东,龙冉.Cu and Si co-doping on TiO2 nanosheets to modulate reactive oxygen species for efficient photocatalytic methane conversion.Nanoscale Horizons,2022,
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龚万兵,熊宇杰,刘东.Highly efficient electrocatalytic biomass valorization over perovskite-derived nickel phosphide catalyst.Nanoscale Horizons,2022,
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Regulating Interfacial Water Structure by Tensile Strain to Boost Electrochemical Semi-hydrogenation of Alkynes.Inorganic Chemistry Frontiers,2022,
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熊海龙,刘东,龙冉,熊宇杰.Recent Advances in Porous Materials for Photocatalytic CO2 Reduction.The Journal of Physical Chemistry Letters,2022,
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张俊铭,刘东.张天雨,刘彬.Strong Metal–Support Interaction Boosts Activity, Selectivity, and Stability in Electrosynthesis of H2O2.Journal of the American Chemical Society,2022,
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刘倩,王仕宏,刘东,柏嵩.Emerging Stacked Photocatalyst Design Enables Spatially Separated Ni(OH)2 Redox Cocatalysts for Overall CO2 Reduction and H2O Oxidation.Small,2021,202104681.
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刘东,熊宇杰.Single-Atom-Based Catalysts for Photoelectrocatalysis: Challenges and Opportunities.Journal of Materials Chemistry A,2021,