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解析磷杂环丙烷与羧酸及其他亲核试剂的C-选择性开环反应:一种基于机理驱动的方法。

Unraveling C-Selective Ring-Opening of Phosphiranes with Carboxylic Acids and Other Nucleophiles: A Mechanistically-Driven Approach.

作者信息

Ghosh Avisek, Van Nguyen Thi Hong, Bellanger Corentin, Chelli Saloua, Ahmad Mohammad, Saffon-Merceron Nathalie, Taillier Catherine, Dalla Vincent, Mayer Robert J, Dixon Isabelle M, Lakhdar Sami

机构信息

CNRS/Université Paul Sabatier, Laboratoire Hetérochimie Fondamentale et Appliquée (LHFA, UMR5069), 118 Route de Narbonne, 31062, Toulouse Cedex 09, France.

Normandie Univ., URCOM, UNIHAVRE, FR 3032, EA 322125 rue Philippe Lebon, BP 540, 76058, Le Havre, France.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 10;64(2):e202414172. doi: 10.1002/anie.202414172. Epub 2024 Oct 22.

Abstract

Phosphiranes are weak Lewis bases reacting with only a limited number of electrophiles to produce the corresponding phosphiranium ions. These salts are recognized for their propensity to undergo reactions with oxygen pronucleophiles at the phosphorus site, leading to the formation of phosphine oxide adducts. Building on a thorough mechanistic understanding, we have developed an unprecedented approach that enables the selective reaction of carboxylic acids, and other nucleophiles, at the carbon site of phosphiranes. This method involves the photochemical generation of highly reactive carbenes, which react with 1-mesitylphosphirane to yield ylides. The latter undergoes a stepwise reaction with carboxylic acids, resulting in the production of the desired phosphines. In addition to DFT calculations, we have successfully isolated and fully characterized the key intermediates involved in the reaction.

摘要

磷杂环丙烷是弱路易斯碱,仅与有限数量的亲电试剂反应生成相应的磷杂环丙鎓离子。这些盐因其易于在磷位点与氧亲核试剂发生反应而形成氧化膦加合物而为人所知。基于深入的机理理解,我们开发了一种前所未有的方法,能够使羧酸和其他亲核试剂在磷杂环丙烷的碳位点发生选择性反应。该方法涉及光化学产生高活性卡宾,其与1-均三甲苯基磷杂环丙烷反应生成叶立德。后者与羧酸进行逐步反应,从而生成所需的膦。除了密度泛函理论计算外,我们还成功分离并全面表征了反应中涉及的关键中间体。

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