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In situ formation of catalytically active graphene in ethylene photo-epoxidation

机译:乙烯光环氧化中催化活性石墨烯的原位形成

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摘要

Ethylene epoxidation is used to produce 2 × 107 ton per year of ethylene oxide, a major feedstock for commodity chemicals and plastics. While high pressures and temperatures are required for the reaction, plasmonic photoexcitation of the Ag catalyst enables epoxidation at near-ambient conditions. Here, we use surface-enhanced Raman scattering to monitor the plasmon excitation-assisted reaction on individual sites of a Ag nanoparticle catalyst. We uncover an unconventional mechanism, wherein the primary step is the photosynthesis of graphene on the Ag surface. Epoxidation of ethylene is then promoted by this photogenerated graphene. Density functional theory simulations point to edge defects on the graphene as the sites for epoxidation. Guided by this insight, we synthesize a composite graphene/Ag/α-Al2O3 catalyst, which accomplishes ethylene photo-epoxidation under ambient conditions at which the conventional Ag/α-Al2O3 catalyst shows negligible activity. Our finding of in situ photogeneration of catalytically active graphene may apply to other photocatalytic hydrocarbon transformations.
机译:乙烯环氧化法每年可生产2××10 7 吨环氧乙烷,环氧乙烷是商品化学品和塑料的主要原料。尽管反应需要高压和高温,但Ag催化剂的等离子体光激发能在接近环境的条件下进行环氧化。在这里,我们使用表面增强拉曼散射来监测银纳米粒子催化剂各个部位上的等离激元激发辅助反应。我们发现了一种非常规机制,其中主要步骤是在Ag表面上进行石墨烯的光合作用。然后,该光生石墨烯促进乙烯的环氧化。密度泛函理论模拟指出石墨烯上的边缘缺陷是环氧化的位点。以此见识为指导,我们合成了复合石墨烯/ Ag /α-Al2O3催化剂,该催化剂在常规Ag /α-Al2O3催化剂显示可忽略不计的活性的环境条件下完成了乙烯的光环氧化。我们对催化活性石墨烯的原位光生化的发现可能适用于其他光催化烃转化。

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