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从稳定的叶立德膦到α-碳负离子膦作为两性离子催化剂的配体

From Stable PH-Ylides to α-Carbanionic Phosphines as Ligands for Zwitterionic Catalysts.

作者信息

Zur Jana-Alina, Schmidt Michelle, Feichtner Kai-Stephan, Duari Prakash, Löffler Julian, Scherpf Thorsten, Gessner Viktoria H

机构信息

Chair of Inorganic Chemistry II, Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstrasse 150, 44780, Bochum, Germany.

出版信息

Angew Chem Int Ed Engl. 2022 Jul 25;61(30):e202203950. doi: 10.1002/anie.202203950. Epub 2022 Jun 14.

Abstract

Although ylides are commonly used reagents in organic synthesis, the parent methylphosphine MePH only exists in its phosphine form in the condensed phase. Its ylide tautomer H P -CH is considerably higher in energy. Here, we report on the formation of bis(sulfonyl)methyl-substituted phosphines of the type (RO S) C(H)-PR which form stable PH ylides under ambient conditions, amongst the first examples of an acyclic phosphine which only exists in its PH ylide form. Depending on the exact substitution pattern the phosphines form an equilibrium between the PH ylide and the phosphine form or exist as one of both extremes. These phosphines were found to be ideal starting systems for the facile formation of α-carbanionic phosphines. The carbanion-functionalization leads to a switch from electron-poor to highly electron-rich phosphines with strong donor abilities and high basicities. Thus, the phosphines readily react with different electrophiles exclusively at the phosphorus atom and not at the carbanionic center. Furthermore, the anionic nature of the phosphines allows the formation of zwitterionic complexes as demonstrated by the isolation of a gold(I) complex with a cationic metal center. The cationic gold center allows for catalytic activity in the hydroamination of alkyne without requiring a further activation step.

摘要

尽管叶立德是有机合成中常用的试剂,但母体甲基膦MePH在凝聚相中仅以膦的形式存在。其叶立德互变异构体H₂P⁺=CH₂能量要高得多。在此,我们报道了(RO₂S)₂C(H)-PR型双(磺酰基)甲基取代膦的形成,这类膦在环境条件下能形成稳定的PH叶立德,是仅以其PH叶立德形式存在的无环膦的首批实例之一。根据确切的取代模式,这些膦在PH叶立德和膦形式之间形成平衡,或作为两种极端形式之一存在。已发现这些膦是易于形成α-碳负离子膦的理想起始体系。碳负离子官能化导致从贫电子膦转变为具有强给体能力和高碱性的富电子膦。因此,这些膦仅在磷原子上而非碳负离子中心与不同的亲电试剂容易发生反应。此外,这些膦的阴离子性质使得能够形成两性离子配合物,如分离出具有阳离子金属中心的金(I)配合物所证明的那样。阳离子金中心在炔烃的氢胺化反应中具有催化活性,而无需进一步的活化步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39ca/9401067/a2b6a60de981/ANIE-61-0-g006.jpg

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