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具有N-硼基取代基的N-杂环亚锗烯和亚锡烯化合物的合成、结构及反应化学

Synthetic, structural and reaction chemistry of N-heterocyclic germylene and stannylene compounds featuring N-boryl substituents.

作者信息

Kristinsdóttir Lilja, Oldroyd Nicola L, Grabiner Rachel, Knights Alastair W, Heilmann Andreas, Protchenko Andrey V, Niu Haoyu, Kolychev Eugene L, Campos Jesús, Hicks Jamie, Christensen Kirsten E, Aldridge Simon

机构信息

Inorganic Chemistry Laboratory, Department of Chemistry, University of Oxford, South Parks Road, Oxford, OX1 3QR, UK.

出版信息

Dalton Trans. 2019 Aug 21;48(31):11951-11960. doi: 10.1039/c9dt02449b. Epub 2019 Jul 18.

Abstract

This study details the syntheses of N-heterocyclic germylenes and stannylenes featuring diazaborolyl groups, {(HCDippN)B} (Dipp = 2,6-PrCH), as both of the N-bound substituents, with a view to generating electron rich and sterically protected metal centres. The energies of their key frontier orbitals - the group 14-centred lone pair and orthogonal p-orbital (typically the HOMO-2 and LUMO) have been probed by DFT calculations and compared with a related acyclic analogue, revealing (in the case of the stannylenes) a correlation with the measured Sn chemical shifts. The reactivity of the germylene systems towards oxygen atom transfer agents has been examined, with 2 : 1 reaction stoichiometries being observed for both MeNO and pyridine N-oxide, leading to the formation of products thought to be derived from the activation of C-H bonds by a transient first-formed germanone.

摘要

本研究详细介绍了以重氮硼烷基团{(HCDippN)B}(Dipp = 2,6 - PrCH)作为两个氮连接取代基的N - 杂环亚锗烯和亚锡烯的合成,旨在生成富电子且空间位阻保护的金属中心。通过密度泛函理论(DFT)计算探究了它们关键前沿轨道的能量——第14族中心孤对电子和正交p轨道(通常为最高占据分子轨道-2和最低未占据分子轨道),并与相关的非环状类似物进行了比较,结果表明(就亚锡烯而言)与测得的锡化学位移存在相关性。研究了亚锗烯体系对氧原子转移试剂的反应活性,发现对于MeNO和吡啶N - 氧化物均观察到2∶1的反应化学计量比,导致形成被认为是由瞬态首次形成的锗酮激活C - H键而衍生的产物。

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