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氟氮磷杂环戊烷的合成、表征及应用

Synthesis, Characterizations and Applications of Fluoroazaphosphatranes.

作者信息

Manick Anne-Doriane, Dutasta Jean-Pierre, Nava Paola, Dufaud Véronique, Gao Guohua, Chatelet Bastien, Martinez Alexandre

机构信息

Aix Marseille Univ, CNRS, Centrale Marseille, iSm2, Marseille, France.

Laboratoire de Chimie, École Normale Supérieure de Lyon, CNRS, 46 allée d'Italie, 69364, Lyon, France.

出版信息

Chem Asian J. 2022 May 2;17(9):e202200115. doi: 10.1002/asia.202200115. Epub 2022 Apr 1.

DOI:10.1002/asia.202200115
PMID:35363422
Abstract

Haloazaphosphatranes are the halogenated parents of proazaphosphatranes, also known as Verkade's superbase. While the synthesis of iodo-, bromo- and chloroazaphosphatranes was reported more than thirty years ago by J. G. Verkade, the first synthesis of fluoroazaphosphatranes was only described in 2018 by Stephan et al. Currently, no common and versatile procedure exists to access fluoroazaphosphatranes platform with different structural characteristics. In this report, a new and simple synthesis of this class of compounds was developed based on the nucleophilic attack of the fluoride anion on chloroazaphosphatrane derivatives with good to high isolated yields for the corresponding fluoroazaphosphatranes (70-92%). The scope of the reaction was widened to fluoroazaphosphatranes bearing various substituents and X-ray molecular structures of two of them are reported. The stability of fluoroazaphosphatranes toward nucleophilic solvents like water has been investigated. As they revealed much more robust cations than their chloroazaphosphatrane parents, their chloride salts were tested as organocatalysts for the formation of cyclic carbonates from epoxides and CO . Fluoroazaphosphatranes proved to be both efficient and stable catalytic systems for CO conversion with catalytic activities similar to those of azaphosphatranes, and no decomposition of the cation was observed at the end of reaction.

摘要

卤代氮杂环戊三烯是氮杂环戊三烯的卤代母体,氮杂环戊三烯也被称为韦尔卡德超强碱。虽然J. G. 韦尔卡德在三十多年前就报道了碘代、溴代和氯代氮杂环戊三烯的合成,但氟代氮杂环戊三烯的首次合成直到2018年才由斯特凡等人描述。目前,还没有一种通用的方法来获得具有不同结构特征的氟代氮杂环戊三烯平台。在本报告中,基于氟离子对氯代氮杂环戊三烯衍生物的亲核进攻,开发了一种新型且简单的这类化合物的合成方法,相应的氟代氮杂环戊三烯的分离产率良好至高(70 - 92%)。该反应的范围扩大到带有各种取代基的氟代氮杂环戊三烯,并报道了其中两种的X射线分子结构。研究了氟代氮杂环戊三烯对水等亲核溶剂的稳定性。由于它们显示出比其氯代氮杂环戊三烯母体更稳定的阳离子,因此测试了它们的氯盐作为由环氧化物和CO形成环状碳酸酯的有机催化剂。事实证明,氟代氮杂环戊三烯是用于CO转化的高效且稳定的催化体系,其催化活性与氮杂环戊三烯相似,并且在反应结束时未观察到阳离子分解。

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