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苯并[3,4]环丁并噻吩及其同系物的几何结构、芳香性和电子性质的理论研究

Theoretical Study on the Geometry, Aromaticity, and Electronic Properties of Benzo[3,4]cyclobutathiophenes and Their Homologues.

作者信息

Hashimoto Shingo, Tahara Kazukuni

机构信息

Department of Applied Chemistry, School of Science and Technology , Meiji University , 1-1-1 Higashimita , Tama-ku, Kawasaki , Kanagawa 214-8571 , Japan.

出版信息

J Org Chem. 2019 Aug 16;84(16):9850-9858. doi: 10.1021/acs.joc.9b00661. Epub 2019 Jul 30.

Abstract

The geometry, aromaticity, and electronic properties of benzo[3,4]cyclobutathiophenes (BCTs) and their homologues have been examined theoretically using density functional theory calculations. The harmonic oscillator measure of aromaticity and nucleus-independent chemical shift analyses revealed the aromaticity characteristics of the two regioisomers benzo[3,4]cyclobuta[1,2-]thiophene and benzo[3,4]cyclobuta[1,2-]thiophene. When the aromaticity of one of the six-π-electron rings increases, it concomitantly decreases in the other ring. The anti-aromaticity of the four-membered ring varies depending on the π-electron density of the shared bond with the thiophene ring. This leads to a large difference of the highest occupied molecular orbital-lowest unoccupied molecular orbital gap between the isomers. Linear BCT homologues show medium diradical characters and the smallest values. In the angular and branched homologues, the π-electrons of central benzene rings are localized avoiding the shared bonds, which results in a nonaromatic character. These data were compared to those of the parent hydrocarbons. Because of the diene character of the thiophene ring, the number and position of annulated thiophenocyclobutadieno moieties significantly influence the aromaticity and values of BCT homologues. The present study does not only provide insight into the aromaticity and the properties of organic compounds containing four-membered rings but also affords helpful design guidelines of novel organic semiconductors.

摘要

使用密度泛函理论计算对苯并[3,4]环丁并噻吩(BCTs)及其同系物的几何结构、芳香性和电子性质进行了理论研究。芳香性的谐振子度量和非核独立化学位移分析揭示了苯并[3,4]环丁并[1,2 - ]噻吩和苯并[3,4]环丁并[1,2 - ]噻吩这两种区域异构体的芳香性特征。当六个π电子环之一的芳香性增加时,另一个环的芳香性会随之降低。四元环的反芳香性取决于与噻吩环共享键的π电子密度。这导致异构体之间最高占据分子轨道 - 最低未占据分子轨道能隙存在很大差异。线性BCT同系物表现出中等双自由基特征且具有最小的值。在角形和支化同系物中,中心苯环的π电子局域化以避开共享键,这导致了非芳香性特征。将这些数据与母体烃的数据进行了比较。由于噻吩环的二烯特征,稠合噻吩环丁二烯部分的数量和位置显著影响BCT同系物的芳香性和值。本研究不仅深入了解了含四元环有机化合物的芳香性和性质,还为新型有机半导体提供了有用的设计指导。

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