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卡宾稳定的磷亚锗烯:异腈的重质类似物。

Carbene-Stabilized Phosphagermylenylidene: A Heavier Analog of Isonitrile.

作者信息

Li Jiancheng, Wang Xin-Feng, Hu Chaopeng, Liu Liu Leo

机构信息

Department of Chemistry and Research Center for Chemical Biology and Omics Analysis, College of Science, Southern University of Science and Technology, Shenzhen 518055, China.

State Key Laboratory of Elemento-Organic Chemistry, Nankai University, Tianjin 300071, China.

出版信息

J Am Chem Soc. 2024 May 22;146(20):14341-14348. doi: 10.1021/jacs.4c04434. Epub 2024 May 10.

Abstract

Phosphagermylenylidenes (R-P═Ge), as heavier analogs of isonitriles, whether in their free state or as complexes with a Lewis base, have not been previously identified as isolable entities. In this study, we report the synthesis of a stable monomeric phosphagermylenylidene within the coordination sphere of a Lewis base under ambient conditions. This species was synthesized by Lewis base-induced dedimerization of a cyclic phosphagermylenylidene dimer or via MeSiCl elimination from a phosphinochlorogermylene framework. The deliberate integration of a bulky, electropositive N-heterocyclic boryl group at the phosphorus site, combined with coordination stabilization by a cyclic (alkyl)(amino)carbene at the low-valent germanium site, effectively mitigated its natural tendency toward oligomerization. Structural analyses and theoretical calculations have demonstrated that this unprecedented species features a P═Ge double bond, characterized by conventional electron-sharing π and σ bonds, complemented by lone pairs at both the phosphorus and germanium atoms. Preliminary reactivity studies show that this base-stabilized phosphagermylenylidene demonstrates facile release of ligands at the Ge atom, coordination to silver through the lone pair on P, and versatile reactivity including both (cyclo)addition and cleavage of the P═Ge double bond.

摘要

磷亚锗烯(R-P═Ge)作为异腈的重原子类似物,无论是处于游离状态还是与路易斯碱形成配合物,此前都未被鉴定为可分离的实体。在本研究中,我们报道了在环境条件下,在路易斯碱的配位球内合成一种稳定的单体磷亚锗烯。该物种是通过路易斯碱诱导的环状磷亚锗烯二聚体的解聚或通过从膦基氯锗烯骨架中消除MeSiCl而合成的。在磷位点特意引入一个庞大的、电正性的N-杂环硼基,同时在低价锗位点通过环状(烷基)(氨基)卡宾进行配位稳定,有效地减轻了其天然的寡聚倾向。结构分析和理论计算表明,这种前所未有的物种具有一个P═Ge双键,其特征是具有传统的电子共享π键和σ键,同时在磷和锗原子上都有孤对电子。初步的反应性研究表明,这种碱稳定的磷亚锗烯在锗原子处能轻易释放配体,通过磷上的孤对电子与银配位,并具有包括P═Ge双键的(环)加成和裂解在内的多种反应性。

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