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金属铜在超声下催化的炔基-叠氮点击反应。

Alkyne-azide click reaction catalyzed by metallic copper under ultrasound.

机构信息

Departamento de Química Orgánica e Inorgánica, Universidad de Extremadura, Avenida de Elvas s/n, Badajoz, Spain.

出版信息

Nat Protoc. 2010 Mar;5(3):607-16. doi: 10.1038/nprot.2010.1. Epub 2010 Mar 4.

Abstract

This protocol is for the ultrasound (US)-assisted 1,3-dipolar cycloaddition reaction of azides and alkynes using metallic copper (Cu) as the catalyst. The azido group is a willing participant in this kind of organic reaction and its coupling with alkynes is substantially improved in the presence of Cu(I). This protocol does not require additional ligands and proceeds with excellent yields. The Cu-catalyzed azide-alkyne cycloaddition (CuAAC) is generally recognized as the most striking example of 'click chemistry'. Reactions involving metals represent the favorite domain of sonochemistry because US favors mechanical depassivation and enhances both mass transfer and electron transfer from the metal to the organic acceptor. The reaction rate increases still further when simultaneous US and microwave irradiation are applied. The US-assisted click synthesis has been applied for the preparation of a wide range of 1,4-disubstituted 1,2,3-triazole derivatives starting both from small molecules and oligomers such as cyclodextrins (CDs). Using this efficient and greener protocol, all the adducts can be synthesized in 2-4 h (including work-up and excluding characterization). Click chemistry has been shown to be able to directly link chemistry to biology, thus becoming a true interdisciplinary reaction with extremely wide applicability.

摘要

本方案介绍了一种在超声(US)辅助下使用金属铜(Cu)作为催化剂的叠氮化物和炔烃的 1,3-偶极环加成反应。叠氮基团是此类有机反应的积极参与者,在 Cu(I) 存在下,其与炔烃的偶联得到显著改善。该方案不需要额外的配体,并且产率优异。Cu 催化的叠氮-炔环加成(CuAAC)通常被认为是“点击化学”最显著的例子。涉及金属的反应是声化学最受欢迎的领域,因为 US 有利于机械去钝化,并增强从金属到有机受体的质量传递和电子转移。当同时应用 US 和微波辐射时,反应速率会进一步提高。超声辅助的点击合成已应用于广泛的 1,4-取代的 1,2,3-三唑衍生物的制备,这些衍生物既可以从小分子和低聚物(如环糊精(CDs))开始。使用这种高效且环保的方案,所有加成都可以在 2-4 小时内(包括后处理和不包括表征)合成。点击化学已被证明能够将化学直接与生物学联系起来,从而成为一种具有极其广泛适用性的真正的跨学科反应。

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