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纳米氧化铱颗粒中胺的氧化脱氢反应研究进展。

Insights into the oxidative dehydrogenation of amines with nanoparticulate iridium oxide.

机构信息

Department of Chemical and Bio-engineering, ETH Zurich, Wolfgang-Pauli-Str. 10, 8093, Zürich (Switzerland), Fax: (+41) 44-633-4258.

出版信息

Chemistry. 2013 Sep 23;19(39):13193-8. doi: 10.1002/chem.201301596. Epub 2013 Aug 12.

Abstract

The aerobic oxidation of amines offers a promising route towards many versatile chemical compounds. Within this contribution, we extend our previous investigations of iridium oxide-catalyzed alcohol oxidation to amine substrates. In addition to demonstrating the versatility of this catalyst, particular attention is focused on the mechanisms of the reaction. Herein, we demonstrate that although amines are oxidized slower than the corresponding alcohols, the catalyst has a preference for amine substrates, and oxidizes various amines at turnover frequencies greater than other systems found in the open literature. Furthermore, the competition between double amine dehydrogenation, to yield the corresponding nitrile, and amine-imine coupling, to yield the corresponding coupled imine, has been found to arise from a competitive reaction pathway, and stems from an effect of substrate-to-metal ratio. Finally, the mechanism responsible for the formation of N-benzylidene-1-phenylmethanamine was examined, and attributed to the coupling of free benzyl amine substrate and benzaldehyde, formed in situ through hydrolysis of the primary reaction product, benzyl imine.

摘要

胺的需氧氧化为许多多功能化合物提供了一条很有前景的途径。在本研究中,我们将之前对铱氧化物催化的醇氧化反应的研究扩展到了胺底物。除了证明该催化剂的多功能性外,特别关注了反应的机制。在这里,我们证明尽管胺的氧化速度比相应的醇慢,但催化剂对胺底物具有选择性,并以高于文献中其他系统的转化频率氧化各种胺。此外,双胺脱氢生成相应腈和胺-亚胺偶联生成相应的偶联亚胺之间的竞争是由竞争反应途径引起的,这源于底物与金属比的影响。最后,研究了形成 N-苄基-1-苯甲胺的机制,并归因于游离苄基胺底物与原位形成的苯甲醛的偶联,苯甲醛是通过初级反应产物苄基亚胺的水解形成的。

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