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铁催化的 TEMPO 氧铵盐氧化串联反应:二氢喹唑啉和喹啉的合成。

Iron-catalyzed oxidative tandem reactions with TEMPO oxoammonium salts: synthesis of dihydroquinazolines and quinolines.

机构信息

Organisch-Chemisches Institut, Westfälische Wilhelms-Universität Münster, Corrensstrasse 40, 48149 Münster, Germany.

出版信息

J Org Chem. 2013 Jun 21;78(12):6050-64. doi: 10.1021/jo4007199. Epub 2013 Jun 7.

Abstract

A straightforward iron-catalyzed divergent oxidative tandem synthesis of dihydroquinazolines and quinolines from N-alkylanilines using a TEMPO oxoammonium salt as a mild and nontoxic oxidant has been developed. Fe(OTf)2 was the Lewis acid catalyst of choice for the formation of dihydroquinazolines, whereas FeCl3 led to better results for the synthesis of quinolines. This divergent approach implies that, for both syntheses, direct oxidative functionalization of a α-C(sp(3))-H bond of the N-alkylanilines occurs, leading to C-N bond formation or C-C bond formation upon homocondensation or reaction with simple olefins, respectively. Cyclization followed by a final oxidation generates these classes of interesting bioactive heterocycles in one synthetic transformation. Additionally, the one-pot multicomponent synthesis of quinolines from anilines, aldehydes, and olefins has also been successfully developed under these mild oxidative conditions.

摘要

发展了一种使用 TEMPO 氧铵盐作为温和无毒氧化剂,由 N-烷基苯胺直接铁催化的氧化串联反应,可得到二氢喹唑啉和喹啉。Fe(OTf)2 是形成二氢喹唑啉的首选路易斯酸催化剂,而 FeCl3 则有利于喹啉的合成。这种发散的方法意味着,对于这两种合成,N-烷基苯胺的α-C(sp(3))-H 键直接发生氧化官能化,分别导致 C-N 键形成或 C-C 键形成,然后发生同缩合或与简单烯烃反应。环化后再进行最终氧化,可在一个合成转化中生成这些具有生物活性的杂环类化合物。此外,在这些温和的氧化条件下,还成功地开发了从苯胺、醛和烯烃一锅多组分合成喹啉的方法。

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