Markert Greta, Paenurk Eno, Gershoni-Poranne Renana
Laboratorium für Organische Chemie, ETH, 8093, Zurich, Switzerland.
Chemistry. 2021 Apr 21;27(23):6923-6935. doi: 10.1002/chem.202005248. Epub 2021 Feb 18.
Triplet-state aromaticity has been recently proposed as a strategy for designing functional organic electronic compounds, many of which are polycyclic aromatic systems. However, in many cases, the aromatic nature of the triplet state cannot be easily predicted. Moreover, it is often unclear how specific structural manipulations affect the electronic properties of the excited-state compounds. Herein, the relationship between the structure of polybenzenoid hydrocarbons (PBHs) and their spin-density distribution and aromatic character in the first triplet excited state is studied. Although a direct link is not immediately visible, classifying the PBHs according to their annulation sequence reveals regularities. Based on these, a set of guidelines is defined to qualitatively predict the location of spin and paratropicity and the singlet-triplet energy gap in larger PBHs, using only their smaller tri- and tetracyclic components, and subsequently tested on larger systems.
三线态芳香性最近被提出作为设计功能性有机电子化合物的一种策略,其中许多是多环芳香体系。然而,在许多情况下,三线态的芳香性质并不容易预测。此外,通常不清楚特定的结构操作如何影响激发态化合物的电子性质。在此,研究了聚苯类碳氢化合物(PBHs)的结构与其在第一三线态激发态下的自旋密度分布和芳香特性之间的关系。尽管直接联系并非立即可见,但根据其环合顺序对PBHs进行分类可揭示规律。基于这些,定义了一组指导原则,仅使用较小的三环和四环组分来定性预测较大PBHs中自旋和同芳香性的位置以及单重态-三重态能隙,随后在更大的体系上进行了测试。