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一种张力反芳香性锇环配合物的分离、反应性及可调性质

Isolation, Reactivity, and Tunable Properties of a Strained Antiaromatic Osmacycle.

作者信息

Li Qian, Hua Yuhui, Tang Chun, Chen Dafa, Luo Ming, Xia Haiping

机构信息

State Key Laboratory of Physical Chemistry of Solid Surfaces, Collaborative Innovation Center of Chemistry for Energy Materials (iChEM), College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, P. R. China.

Shenzhen Grubbs Institute, Department of Chemistry, Southern University of Science and Technology, Shenzhen 518055, P. R. China.

出版信息

J Am Chem Soc. 2023 Apr 5;145(13):7580-7591. doi: 10.1021/jacs.3c00942. Epub 2023 Mar 23.

Abstract

Strain and antiaromaticity in compounds are recognized as two substantial destabilizing features, and consequently, realization of dual destabilizing features in a single molecule is challenging and far more difficult in a single ring. Moreover, transformation of an antiaromatic framework to different antiaromatic or aromatic species is a significant subject in antiaromatic chemistry and has attracted increasing interest. In this work, we isolated a highly strained antiaromatic metallacycle in which a cyclic metal vinylidene unit is embedded. Computational studies revealed its ring strain energies and antiaromatic character and showed that the metal incorporation and the phosphonium substituents play a crucial role in its stabilization. The mechanism of its formation has been illustrated by density functional theory (DFT) calculations and the isolation of a key intermediate. We further discovered diverse reactivities and structural reshuffling of this unusual strained antiaromatic complex according to its two destabilizing characters. We obtained two isomers of metallaindenes fused with oxiranes from the direct oxidation of the metal vinylidene or by nucleophilic addition to an isolated metallacyclocumulene formed by the reaction of metal vinylidene with hydroxide ion, achieving a reconfiguration of the antiaromatic framework. Transformations of the antiaromatic metallacycle by electrophiles to various aromatic metallaindynes have been achieved, and that a condensed Fukui function was employed to confirm the regioselectivity of the electrophilic additions, and the acid/base-induced aromaticity switch along with tunable photophysical properties were investigated. These interesting transformations not only enrich the chemistry of metal vinylidenes and antiaromatics and could also perform potentially as switchable optical materials.

摘要

化合物中的张力和反芳香性被认为是两个显著的不稳定特征,因此,在单个分子中实现双重不稳定特征具有挑战性,而在单个环中则困难得多。此外,将反芳香框架转化为不同的反芳香或芳香物种是反芳香化学中的一个重要课题,并已引起越来越多的关注。在这项工作中,我们分离出一种高度张力的反芳香金属环,其中嵌入了一个环状金属亚乙烯基单元。计算研究揭示了其环张力能和反芳香特性,并表明金属的引入和鏻取代基在其稳定性中起着关键作用。通过密度泛函理论(DFT)计算和关键中间体的分离阐明了其形成机制。我们进一步根据其两个不稳定特征发现了这种不寻常的张力反芳香配合物的多种反应性和结构重排。我们通过金属亚乙烯基的直接氧化或通过亲核加成到由金属亚乙烯基与氢氧根离子反应形成的孤立金属环累积烯上,获得了与环氧乙烷稠合的金属茚的两种异构体,实现了反芳香框架的重新配置。已实现反芳香金属环通过亲电试剂转化为各种芳香金属茚炔,并且采用凝聚福井函数来确认亲电加成的区域选择性,并研究了酸碱诱导的芳香性开关以及可调光物理性质。这些有趣的转化不仅丰富了金属亚乙烯基和反芳香化合物的化学性质,还可能作为可切换光学材料发挥潜在作用。

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