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首页> 外文期刊>Comptes Rendus Chimie >The effect of framework functionality on the catalytic activation of supported Pd nanoparticles in the Mizoroki-Heck coupling reaction
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The effect of framework functionality on the catalytic activation of supported Pd nanoparticles in the Mizoroki-Heck coupling reaction

机译:框架功能对Mizoroki-Heck耦合反应中负载Pd纳米粒子催化活化的影响

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摘要

Palladium nanoparticles (Pd-NPs) were supported on functional and nonfunctional Cocoordination polymers (Pd/CoBDCNH2 and Pd/CoBDC). Advanced analytical techniques revealed that Pd-NPs are supported on the external surface of the polymer framework and the functionalized framework possesses effective influence to prevent Pd-NP aggregation. Supported Pd-NPs were effectively applied as heterogeneous recyclable catalysts in the MizorokieHeck C-C cross coupling reactions of iodobenzene and either aromatic or aliphatic terminal alkenes. Catalytic results exhibited that highly dispersed Pd-NPs with low loading (1%) on the functional polymer (Pd/CoBDCNH2) are more effective than aggregated Pd-NPs with high loading (9%) on the nonfunctional polymer (Pd/CoBDC). Both catalysts can simultaneously provide high activity and selectivity to E-coupled products, high efficiency in low amounts, easy separation of heterogeneous catalyst and appropriate performance in the recycling reaction without addition of a reducing agent. (C) 2016 Acadmie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:钯纳米颗粒(PD-NPS)负载在功能性和非官能椰子化合物(Pd / COBDCNH2和PD / COBDC)上。先进的分析技术表明,PD-NPS在聚合物框架的外表面上负载,并且功能化框架具有有效的影响,以防止PD-NP聚集。支持的PD-NPS在碘苯的Mizorokieheck C-C交叉偶联反应中有效地施加为非均相可回收催化剂,以及芳族或脂族末端烯烃。催化结果表明,在非官能聚合物(Pd / COBDC)上具有高负载(9%)的聚集性聚合物(Pd / COBDCNH2)上具有低负荷(1%)的高负载(1%)的高度分散的PD-NP更有效。两种催化剂都可以同时为E型偶联产物提供高活性和选择性,低量效率,易于分离非均相催化剂,以及在再循环反应中的适当性能而不加入还原剂。 (c)2016年Acadmie Des Sciences。由Elsevier Masson SA出版。版权所有。

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