Proving Triptycene Homoconjugation with the Same Chromophore but Different Connectivity to the Core

Sven M. Elbert, Tobias Kirschbaum, F. Rominger, M. Mastalerz
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Abstract

Abstract Homoconjugation is a phenomenon discussed for various π-systems where classical conjugation is broken by e.g. methylene units but still a stabilization by electronic communication exists. In this respect, triptycene with its rigid C3 symmetric geometry is an ideal scaffold to study this phenomenon. Although several studies based on triptycene strengthen the hypothesis of homoconjugation, in all described cases the electronic communication through space relies on different π-blades. Here, two triptycenes are presented having the exact same π-extended chromophore, but differently annulated to the bicyclic core. Both compounds were investigated by spectroscopic as well as computational means and compared with the corresponding model compound, elucidating the influence of the attachment site to the triptycene core on potential homoconjugation.
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具有相同发色团但与核连接不同的三烯同源共轭的证明
摘要同共轭是讨论各种π-系统的一种现象,其中经典共轭被例如亚甲基单元破坏,但仍然存在通过电子通信的稳定。在这方面,具有刚性C3对称几何形状的三联烯是研究这一现象的理想支架。尽管基于三联烯的几项研究加强了同源共轭的假设,但在所有描述的情况下,通过空间的电子通信都依赖于不同的π-叶片。在这里,两个三联烯具有完全相同的π-扩展发色团,但与双环核的环化不同。通过光谱和计算手段对这两种化合物进行了研究,并与相应的模型化合物进行了比较,阐明了三联烯核的连接位点对潜在同源共轭的影响。
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来源期刊
CiteScore
3.70
自引率
0.00%
发文量
0
审稿时长
12 weeks
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