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使用硅酸盐负载的锐钛矿型光催化剂,可见光诱导伯胺向亚胺的绿色转化。

Visible light induced green transformation of primary amines to imines using a silicate supported anatase photocatalyst.

作者信息

Zavahir Sifani, Zhu Huaiyong

机构信息

School of Chemistry, Physics and Mechanical Engineering, Science and Engineering Faculty, Queensland University of Technology, Brisbane QLD 4001, Australia.

出版信息

Molecules. 2015 Jan 26;20(2):1941-54. doi: 10.3390/molecules20021941.

Abstract

Catalytic oxidation of amine to imine is of intense present interest since imines are important intermediates for the synthesis of fine chemicals, pharmaceuticals, and agricultural chemicals. However, considerable efforts have been made to develop efficient methods for the oxidation of secondary amines to imines, while little attention has until recently been given to the oxidation of primary amines, presumably owing to the high reactivity of generated imines of primary amines that are easily dehydrogenated to nitriles. Herein, we report the oxidative coupling of a series of primary benzylic amines into corresponding imines with dioxygen as the benign oxidant over composite catalysts of TiO2 (anatase)-silicate under visible light irradiation of λ > 460 nm. Visible light response of this system is believed to be as a result of high population of defects and contacts between silicate and anatase crystals in the composite and the strong interaction between benzylic amine and the catalyst. It is found that tuning the intensity and wavelength of the light irradiation and the reaction temperature can remarkably enhance the reaction activity. Water can also act as a green medium for the reaction with an excellent selectivity. This report contributes to the use of readily synthesized, environmentally benign, TiO2 based composite photocatalyst and solar energy to realize the transformation of primary amines to imine compounds.

摘要

胺催化氧化为亚胺是当前备受关注的领域,因为亚胺是合成精细化学品、药物和农用化学品的重要中间体。然而,人们已经付出了相当大的努力来开发将仲胺氧化为亚胺的有效方法,而直到最近,伯胺的氧化很少受到关注,这可能是由于伯胺生成的亚胺具有高反应活性,容易脱氢生成腈。在此,我们报道了在λ>460 nm的可见光照射下,以二氧化钛(锐钛矿型)-硅酸盐复合催化剂,将一系列伯苄胺与氧气作为良性氧化剂氧化偶联为相应的亚胺。该体系的可见光响应被认为是由于复合材料中硅酸盐和锐钛矿晶体之间存在大量缺陷和接触,以及苄胺与催化剂之间的强相互作用。研究发现,调节光照射的强度和波长以及反应温度可以显著提高反应活性。水也可以作为该反应的绿色介质,具有优异的选择性。本报告有助于利用易于合成、环境友好的二氧化钛基复合光催化剂和太阳能实现伯胺向亚胺化合物的转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acdb/6272701/ae31c72b6731/molecules-20-01941-g001.jpg

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