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非对称双(反芳香族)化合物中的结构-性质关系:究竟是彭烷还是苯并环丁二烯赢得了这场战斗?†。

Structure-Property Relationships in Unsymmetric Bis(antiaromatics): Who Wins the Battle between Pentalene and Benzocyclobutadiene?†.

机构信息

MTA-TTK "Lendület" Functional Organic Materials Research Group, Institute of Organic Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Magyar tudósok körútja 2, 1117 Budapest, Hungary.

Institute of Chemistry, University of Szeged, Rerrich Square 1, Szeged H-6720, Hungary.

出版信息

J Org Chem. 2020 Apr 17;85(8):5158-5172. doi: 10.1021/acs.joc.9b03119. Epub 2020 Mar 30.

Abstract

According to the currently accepted structure-property relationships, aceno-pentalenes with an angular shape (fused to the 1,2-bond of the acene) exhibit higher antiaromaticity than those with a linear shape (fused to the 2,3-bond of the acene). To explore and expand the current view, we designed and synthesized molecules where two isomeric, yet, different, 8π antiaromatic subunits, a benzocyclobutadiene (BCB) and a pentalene, are combined into, respectively, an angular and a linear topology via an unsaturated six-membered ring. The antiaromatic character of the molecules is supported experimentally by H NMR, UV-vis, and cyclic voltammetry measurements and X-ray crystallography. The experimental results are further confirmed by theoretical studies including the calculation of several aromaticity indices (NICS, ACID, HOMA, FLU, MCI). In the case of the angular molecule, double bond-localization within the connecting six-membered ring resulted in reduced antiaromaticity of both the BCB and pentalene subunits, while the linear structure provided a competitive situation for the two unequal [4]π subunits. We found that in the latter case the BCB unit alleviated its unfavorable antiaromaticity more efficiently, leaving the pentalene with strong antiaromaticity. Thus, a reversed structure-antiaromaticity relationship when compared to aceno-pentalenes was achieved.

摘要

根据目前公认的结构-性质关系,具有角形形状(与并五苯的 1,2-键融合)的吖啶戊二烯比具有线性形状(与并五苯的 2,3-键融合)的吖啶戊二烯具有更高的反芳香性。为了探索和扩展当前的观点,我们设计并合成了两种异构体,但不同的 8π 反芳香性亚基,苯并环丁二烯(BCB)和戊二烯,分别通过不饱和六元环组合成角形和线性拓扑。通过 H NMR、UV-vis 和循环伏安法测量和 X 射线晶体学实验证实了分子的反芳香性。实验结果通过理论研究进一步证实,包括计算几个芳香性指数(NICS、ACID、HOMA、FLU、MCI)。在角形分子的情况下,连接六元环内的双键定域导致 BCB 和戊二烯亚基的反芳香性降低,而线性结构为两个不等的[4]π亚基提供了竞争环境。我们发现,在后一种情况下,BCB 单元更有效地减轻了其不利的反芳香性,使戊二烯具有强烈的反芳香性。因此,与并五苯相比,实现了相反的结构-反芳香性关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77da/7311060/a46a315cf6fa/jo9b03119_0005.jpg

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