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通过转烷氧基化反应合成具有元素-元素键的低价双核第14族化合物

Synthesis of Low-Valent Dinuclear Group 14 Compounds with Element-Element Bonds by Transylidation.

作者信息

Mohapatra Chandrajeet, Darmandeh Heidar, Steinert Henning, Mallick Bert, Feichtner Kai-Stephan, Gessner Viktoria H

机构信息

Chair of Inorganic Chemistry II, Faculty of Chemistry and Biochemistry, Ruhr-University Bochum, Universitätsstraße 150, 44801, Bochum, Germany.

出版信息

Chemistry. 2020 Nov 26;26(66):15145-15149. doi: 10.1002/chem.202004242. Epub 2020 Oct 19.

Abstract

Dinuclear low-valent compounds of the heavy main group elements are rare species owing to their intrinsic reactivity. However, they represent desirable target molecules due to their unusual bonding situations as well as applications in bond activations and materials synthesis. The isolation of such compounds usually requires the use of substituents that provide sufficient stability and synthetic access. Herein, we report on the use of strongly donating ylide-substituents to access low-valent dinuclear group 14 compounds. The ylides not only impart steric and electronic stabilization, but also allow facile synthesis via transfer of an ylide from tetrylene precursors of type Y E to ECl (E=Ge, Sn; Y=TolSO (PR )C with R=Ph, Cy). This method allowed the isolation of dinuclear complexes amongst a germanium analogue of a vinyl cation, [( Y) GeGe( Y)] with an electronic structure best described as a germylene-stabilized Ge cation and a ylide(chloro)digermene [ Y(Cl)GeGe(Cl) Y] with an unusually unsymmetrical structure.

摘要

由于其固有的反应活性,重主族元素的双核低价化合物是稀有物种。然而,由于其不寻常的键合情况以及在键活化和材料合成中的应用,它们代表了理想的目标分子。此类化合物的分离通常需要使用能提供足够稳定性和合成途径的取代基。在此,我们报道了使用强供电子叶立德取代基来制备低价双核第14族化合物。叶立德不仅赋予空间和电子稳定性,还能通过叶立德从YE型特立烯前体转移至ECl(E = Ge、Sn;Y = TolSO(PR)C,R = Ph、Cy)实现简便合成。该方法使得在乙烯基阳离子的锗类似物[(Y)GeGe(Y)](其电子结构最好描述为亚锗烯稳定的Ge阳离子)和具有异常不对称结构的叶立德(氯)二锗烯[Y(Cl)GeGe(Cl)Y]中分离出双核配合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89fe/7756224/854f159799e6/CHEM-26-15145-g001.jpg

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