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首页> 外文期刊>Chemistry: A European journal >Soluble Porous Coordination Frameworks Constructed from Inorganic Nanoparticles as Homogenized Heterogeneous Photocatalysts for Suzuki Coupling Reactions under Near-Infrared Light
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Soluble Porous Coordination Frameworks Constructed from Inorganic Nanoparticles as Homogenized Heterogeneous Photocatalysts for Suzuki Coupling Reactions under Near-Infrared Light

机译:可溶性多孔配位框架由无机纳米颗粒构成,作为近红外光下的铃木偶联反应的均质非均相光催化剂

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摘要

Self-assembly has emerged as a promising method to control the structure and properties of ensembles of inorganic nanoparticles (NPs) for exploiting their collective effects. However, the rational assembly of inorganic NPs into soluble porous architectures for use as homogenized heterogeneous catalysts has been less studied. Herein, it is shown that inorganic NPs can be used for the assembly of soluble porous coordination frameworks (PCFs) by atomscale interfacial coordination-driven assembly. Owing to their large pore size, high dispersity in solution, strong absorption in the near-infrared (NIR) range, and long-lived electron-hole pair, the obtained soluble frameworks could serve as a platform for homogenized heterogeneous photocatalysts, which exhibited excellent activity, high apparent quantum efficiency, and recyclability in the catalysis of the noble-metal-free Suzuki coupling reactions under NIR light at room temperature. Moreover, PCF catalysts can be reused more than five times without significant loss of activity, which indicates long-term stability. The present strategy to fabricate soluble porous nanostructures opens a new chemical toolbox for homogenized heterogeneous catalysts and may bring new inspiration to photocatalysis.
机译:自组装作为一种有希望的方法,用于控制无机纳米颗粒(NPS)的结构和性质来利用它们的集体效应。然而,研究了无机NPS进入可溶多孔架构用作均质化的非均相催化剂的合理组装。在此,示出了无机NPS可用于通过雾化界面协调驱动的组件组装可溶性多孔协调框架(PCF)。由于其孔径大,溶液中的高分散性,近红外线(NIR)范围的强吸收和长寿命的电子 - 孔对,所获得的可溶框架可以作为均匀化的异质光催化剂的平台,其表现出优异的在室温下NIR光下的贵金属无金属铃木偶联反应的催化作用,高表观量子效率和可回收性。此外,PCF催化剂可以重复使用超过五次,而不会显着损失活性,这表明了长期稳定性。制造可溶多孔纳米结构的本发明策略为均质化的非均相催化剂打开了一种新的化学工具箱,可以将新的灵感带到光催化。

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