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环庚三烯双稠合茚并芴骨架的反芳香性主要源于庚搭烯片段。

Antiaromatic character of cycloheptatriene-bis-annelated indenofluorene framework mainly originated from heptafulvene segment.

作者信息

Yamamoto Keitaro, Ie Yutaka, Tohnai Norimitsu, Kakiuchi Fumitoshi, Aso Yoshio

机构信息

The Institute of Scientific and Industrial Research (ISIR), Osaka University, 8-1 Mihogaoka, Ibaraki, Osaka, 567-0047, Japan.

Japan Science and Technology (JST) Agency, ACT-C, 4-1-8 Honcho, Kawaguchi, Saitama, 332-0012, Japan.

出版信息

Sci Rep. 2018 Dec 5;8(1):17663. doi: 10.1038/s41598-018-35839-w.

Abstract

Fully π-conjugated polycyclic hydrocarbons with antiaromatic character have attracted research attention because of their unique properties such as narrow energy gaps, and thus should find application as optical and electronic materials. Although antiaromatic 16π-electron frameworks can be constructed by the incorporation of multiple seven-membered rings in a fused fashion to install methylenecycloheptatriene (heptafulvene) segments, the development of corresponding benzo[1,2:4,5]di[7]annulene (BDA)-containing π-conjugated systems remains challenging due to the difficulty of their molecular design and synthesis. In this study, we develop an unprecedented chemical structure of cycloheptatriene-bis-annelated indenofluorene, which possesses both BDA and indenofluorene frameworks in a fused fashion. Physical measurements and X-ray analyses, along with theoretical calculations, indicated that antiaromaticity appeared in the BDA framework. By using the conjugated polycyclic hydrocarbon possessing both seven-membered and five-membered rings, this study provides fundamental insight into the strong antiaromatic nature of heptafulvene-based BDA framework.

摘要

具有反芳香性的全π共轭多环烃因其独特性质(如窄能隙)而受到研究关注,因此有望作为光学和电子材料得到应用。尽管通过稠合多个七元环以引入亚甲基环庚三烯(庚搭烯)片段可构建反芳香性的16π电子骨架,但由于相应含苯并[1,2:4,5]二[7]轮烯(BDA)的π共轭体系分子设计和合成困难,其发展仍然具有挑战性。在本研究中,我们开发了一种前所未有的环庚三烯双稠合茚并芴化学结构,它以稠合方式同时拥有BDA和茚并芴骨架。物理测量、X射线分析以及理论计算表明,BDA骨架中存在反芳香性。通过使用同时含有七元环和五元环的共轭多环烃,本研究为基于庚搭烯的BDA骨架的强反芳香性质提供了基本认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2237/6281641/093e4620fb0f/41598_2018_35839_Fig1_HTML.jpg

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