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首页> 外文期刊>Angewandte Chemie >Copper Nanoparticles on Graphene Support: An Efficient Photocatalyst for Coupling of Nitroaromatics in Visible Light
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Copper Nanoparticles on Graphene Support: An Efficient Photocatalyst for Coupling of Nitroaromatics in Visible Light

机译:石墨烯载体上的铜纳米粒子:可见光中硝基芳烃偶联的高效光催化剂

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摘要

Copper is a low-cost plasmonic metal. Efficient photocatalysts of copper nanoparticles on graphene support are successfully developed for controllably catalyzing the coupling reactions of aromatic nitro compounds to the corresponding azoxy or azo compounds under visible-light irradiation. The coupling of nitrobenzene produces azoxyben-zene with a yield of 90 % at 60°C, but azobenzene with a yield of 96 % at 90° C. When irradiated with natural sunlight (mean light intensity of 0.044 Wcm~(-2)) at about 35°C, 70% of the nitrobenzene is converted and 57 % of the product is azobenzene. The electrons of the copper nanoparticles gain the energy of the incident light through a localized surface plasmon resonance effect and photoexcitation of the bound electrons. The excited energetic electrons at the surface of the copper nanoparticles facilitate the cleavage of the N—O bonds in the aromatic nitro compounds. Hence, the catalyzed coupling reaction can proceed under light irradiation and moderate conditions. This study provides a green photocatalytic route for the production of azo compounds and highlights a potential application for graphene.
机译:铜是一种低成本的等离子体金属。成功开发了在石墨烯载体上的铜纳米颗粒的高效光催化剂,用于在可见光照射下可控地催化芳香族硝基化合物与相应的偶氮或偶氮化合物的偶联反应。硝基苯偶合产生的偶氮苯在60°C时产率为90%,而偶氮苯在90°C时产率为96%。当被自然阳光照射时(平均光强度为0.044 Wcm〜(-2))在约35℃下,70%的硝基苯被转化,而57%的产物是偶氮苯。铜纳米粒子的电子通过局部表面等离子体激元共振效应和结合电子的光激发而获得入射光的能量。铜纳米颗粒表面的激发能电子促进了芳族硝基化合物中N-O键的裂解。因此,催化的偶联反应可以在光照射和中等条件下进行。这项研究为生产偶氮化合物提供了绿色的光催化途径,并突出了石墨烯的潜在应用。

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