Doleschal Martin E, Kostenko Arseni, Liu Jin Yu, Inoue Shigeyoshi
TUM School of Natural Sciences, Department of Chemistry, Catalysis Research Center and Wacker Institute of Silicon Chemistry, Technische Universität Müchen, Garching, Germany.
Nat Chem. 2024 Dec;16(12):2009-2016. doi: 10.1038/s41557-024-01618-6. Epub 2024 Sep 10.
Nitriles (R-C≡N) have been investigated since the late eighteenth century and are ubiquitous encounters in organic and inorganic syntheses. In contrast, heavier nitriles, which contain the heavier analogues of carbon and nitrogen, are sparsely investigated species. Here we report the synthesis and isolation of a phosphino-silylene featuring an N-heterocyclic carbene-phosphinidene and a highly sterically demanding silyl group as substituents. Due to its unique structural motif, it can be regarded as a Lewis base-stabilized heavier nitrile. The Si-P bond displays multiple bond character and a bent R-Si-P geometry, the latter indicating fundamental differences between heavier and classical nitriles. In solution, a quantitative unusual rearrangement to a phosphasilenylidene occurs. This rearrangement is consistent with theoretical predictions of rearrangements from heavier nitriles to heavier isonitriles. Our preliminary reactivity studies revealed that both isomers exhibit highly nucleophilic silicon centres capable of oxidative addition and coordination to iron tetracarbonyl.
腈类化合物(R-C≡N)自18世纪末以来就受到了研究,并且在有机和无机合成中普遍存在。相比之下,含有碳和氮较重类似物的重腈类化合物则是研究较少的物种。在此,我们报告了一种膦基硅烯的合成与分离,该膦基硅烯具有一个N-杂环卡宾-膦亚基和一个空间位阻极大的硅基作为取代基。由于其独特的结构 motif,它可被视为一种路易斯碱稳定的重腈。Si-P键呈现多重键特征以及弯曲的R-Si-P几何结构,后者表明重腈与经典腈之间存在根本差异。在溶液中,会发生定量的异常重排生成膦硅烯基。这种重排与从重腈到重异腈重排的理论预测一致。我们的初步反应性研究表明,两种异构体都表现出具有高度亲核性的硅中心,能够进行氧化加成并与四羰基铁配位。