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首页> 外文期刊>Catalysis science & technology >Magnetically recoverable AuPd nanoparticles prepared by a coordination capture method as a reusable catalyst for green oxidation of benzyl alcohol
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Magnetically recoverable AuPd nanoparticles prepared by a coordination capture method as a reusable catalyst for green oxidation of benzyl alcohol

机译:通过协调捕获方法制备的磁性回收AUPD纳米颗粒,作为可重复使用的催化剂,用于苄醇的绿色氧化

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摘要

AuPd nanoparticles (AuPd NPs) have received considerable attention because of their importance as catalysts in selective aerobic oxidations; however, improved synthetic methods for making them reusable catalysts are necessary. Here, we present the preparation of magnetically recoverable AuPd NPs by immobilizing pre-synthesized PVA-stabilized AuPd NPs onto magnetic supports. The immobilization method is based on the functionalization of the support with strong coordinating ligands, such as amino and thiol, for the attachment of AuPd NPs containing weak coordinating groups. We were able to increase the metal loading by a coordination capture method with functionalized supports, but the ligands grafted on the support surface affected the catalytic activity of AuPd NPs. Moreover, the amino groups provided stabilization in solution, which made the catalyst separation after reaction difficult. Finally, we obtained highly active and recyclable catalysts by removing the functional groups by a thermal treatment. Negligible metal leaching and catalyst recycling in successive reactions are important features of the new catalytic system.
机译:AUPD纳米颗粒(AUPD NP)受到了相当大的关注,因为它们作为选择性有氧氧化的催化剂的重要性。但是,需要改进使它们可重复使用的催化剂的合成方法。在这里,我们通过将预先合成的PVA稳定的AUPD NPS固定在磁支持上来介绍磁性回收的AUPD NP。固定方法是基于辅助配体(例如氨基和硫醇)的辅助配体的功能化,以连接含有弱协调组的AUPD NP。我们能够通过具有功能化支持的协调捕获方法来增加金属载荷,但是在支撑表面上移植的配体影响了AUPD NP的催化活性。此外,氨基基团在溶液中提供了稳定,这使反应后的催化剂分离困难。最后,我们通过通过热处理去除官能团来获得高度活性和可回收的催化剂。连续反应中可忽略的金属浸出和催化剂回收是新催化系统的重要特征。

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