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微波与水性溶剂促进亲核性较弱的苯胺与锌盐的反应。

Microwaves and Aqueous Solvents Promote the Reaction of Poorly Nucleophilic Anilines with a Zincke Salt.

作者信息

Zeghbib Narimane, Thelliere Paul, Rivard Michael, Martens Thierry

机构信息

Université Paris Est , ICMPE (UMR 7182), CNRS, UPEC, 94320 Thiais, France.

出版信息

J Org Chem. 2016 Apr 15;81(8):3256-62. doi: 10.1021/acs.joc.6b00208. Epub 2016 Mar 30.

Abstract

The Zincke reaction allows the transformation of primary amines into their respective N-alkylated or N-arylated pyridinium salts. While nucleophilic primary amines (typically, aliphatic primary amines) often lead to quantitative reactions and has been documented profusely, the use of poorly nucleophilic amines still requires an in depth account. To date, the lack of nucleophilicity of the amines is redhibitory. The subject addressed in this article is a series of primary amines deriving from aniline having been engaged in Zincke reactions. Efficient transformations were obtained, even when conducted on electronically deactivated, eventually also sterically hindered, substrates. This was achieved by the combined use of microwave activation and aqueous solvents. Under our conditions, the role of water revealed indeed crucial to avoid the self-degradation of the Zincke salt, the reagent of the reaction.

摘要

津克反应可将伯胺转化为各自的N-烷基化或N-芳基化吡啶鎓盐。虽然亲核性伯胺(通常为脂肪族伯胺)常常能实现定量反应且已有大量文献记载,但对于亲核性较差的胺类的应用仍需深入研究。迄今为止,胺类亲核性不足是个阻碍因素。本文探讨的主题是一系列由苯胺衍生而来的伯胺参与津克反应的情况。即便在电子钝化、最终甚至空间位阻较大的底物上进行反应,也能实现高效转化。这是通过联合使用微波活化和水性溶剂实现的。在我们的条件下,水的作用对于避免反应试剂津克盐的自身降解确实至关重要。

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