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平面环戊-4-基阳离子:通过超共轭稳定的高度离域π芳香族化合物。

Planar Cyclopenten-4-yl Cations: Highly Delocalized π Aromatics Stabilized by Hyperconjugation.

作者信息

Nees Samuel, Kupfer Thomas, Hofmann Alexander, Braunschweig Holger

机构信息

Institut für Anorganische Chemie, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.

Institute for Sustainable Chemistry & Catalysis with Boron, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074, Würzburg, Germany.

出版信息

Angew Chem Int Ed Engl. 2020 Oct 12;59(42):18809-18815. doi: 10.1002/anie.202009644. Epub 2020 Aug 25.

Abstract

Theoretical studies predicted the planar cyclopenten-4-yl cation to be a classical carbocation, and the highest-energy isomer of C H . Hence, its existence has not been verified experimentally so far. We were now able to isolate two stable derivatives of the cyclopenten-4-yl cation by reaction of bulky alanes Cp AlBr with AlBr . Elucidation of their (electronic) structures by X-ray diffraction and quantum chemistry studies revealed planar geometries and strong hyperconjugation interactions primarily from the C-Al σ bonds to the empty p orbital of the cationic sp carbon center. A close inspection of the molecular orbitals (MOs) and of the anisotropy of current (induced) density (ACID), as well as the evaluation of various aromaticity descriptors indicated distinct aromaticity for these cyclopenten-4-yl derivatives, which strongly contrasts the classical description of this system. Here, strong delocalization of π electrons spanning the whole carbocycle has been verified, thus providing rare examples of π aromaticity involving saturated sp carbon atoms.

摘要

理论研究预测平面环戊-4-基阳离子是一种经典碳正离子,也是CH的最高能量异构体。因此,到目前为止其存在尚未得到实验验证。我们现在能够通过大位阻铝烷CpAlBr与AlBr反应分离出两种环戊-4-基阳离子的稳定衍生物。通过X射线衍射和量子化学研究对其(电子)结构的解析揭示了平面几何结构以及主要从C-Al σ键到阳离子sp碳中心空p轨道的强烈超共轭相互作用。对分子轨道(MOs)和电流(感应)密度各向异性(ACID)的仔细检查,以及对各种芳香性描述符的评估表明这些环戊-4-基衍生物具有明显的芳香性,这与该体系的经典描述形成强烈对比。在此,跨越整个碳环的π电子的强离域已得到验证,从而提供了涉及饱和sp碳原子的π芳香性的罕见例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dfab/7589364/b5e0852bc202/ANIE-59-18809-g001.jpg

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