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Cu0 Nanoparticles Deposited on Nanoporous Polymers: A Recyclable Heterogeneous Nanocatalyst for Ullmann Coupling of Aryl Halides with Amines in Water

机译:沉积在纳米多孔聚合物上的Cu0纳米颗粒:一种可循环的非均相纳米催化剂用于水中卤化芳基与胺的乌尔曼偶联

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摘要

Cu0 nanoparticles were deposited on a nanoporous polymer to develop a novel nanocatalyst (Cu-B) for carrying out Ullmann coupling of aryl halides with amines in water. Non-aqueous polymerization of a mixture of divinylbenzene and acrylic acid under hydrothermal conditions followed by the deposition of Cu0 nanoparticles were adopted to afford the Cu-B nanocatalyst. In order to compare the catalytic activity of the Cu-B nanocatalyst in the Ullmann coupling reactions, another nanocatalyst, Cu0 nanoparticle-loaded porous carbon (Cu-A), was also prepared. All the newly developed Cu0 nanoparticle-based nanocatalysts were thoroughly characterized using several characterization techniques. The Ullmann coupling reactions were carried out in water only with 1.35 mol% loading of Cu as catalytically active sites in Cu-B. The Cu-B nanocatalyst exhibited higher catalytic activity as compared with Cu-A, and also showed a good catalytic recyclability with a high consistence in the catalytic activity. No Cu leaching from the nanocatalyst surface and the smooth nanocatalyst recovery confirm the true heterogeneity in these catalytic reactions.
机译:将Cu 0 纳米颗粒沉积在纳米多孔聚合物上,以开发一种新型的纳米催化剂(Cu-B),用于在水中将芳基卤化物与胺进行Ullmann偶联。采用二乙烯基苯和丙烯酸的混合物在水热条件下进行非水聚合,然后沉积Cu 0 纳米颗粒,得到Cu-B纳米催化剂。为了比较Ubmann偶联反应中Cu-B纳米催化剂的催化活性,还制备了另一种负载Cu 0 纳米颗粒的多孔碳(Cu-A)。使用几种表征技术对所有新开发的基于Cu 0 的纳米粒子进行了全面表征。乌尔曼偶联反应仅在水中以1.35 mol%的铜负载作为Cu-B中的催化活性位点进行。与Cu-A相比,Cu-B纳米催化剂表现出更高的催化活性,并且还表现出良好的催化再循环性和高的催化活性一致性。没有铜从纳米催化剂表面浸出和顺利的纳米催化剂回收证实了这些催化反应中真正的异质性。

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