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Zethrene biradicals: How pro-aromaticity is expressed in the ground electronic state and in the lowest energy singlet, triplet, and ionic states

机译:Zethrene双基自由基:如何在基态电子态以及最低能量的单重态,三重态和离子态中表达芳香性

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摘要

A analysis of the electronic and molecular structures of new molecular materials based on zethrene is presented with particular attention to those systems having a central benzo-quinoidal core able to generate Kekulé biradicals whose stability is provided by the aromaticity recovery in this central unit. These Kekulé biradicals display singlet ground electronic states thanks to double spin polarization and have low-energy lying triplet excited states also featured by the aromaticity gain. Proaromatization is also the driving force for the stabilization of the ionized species. Moreover, the low energy lying singlet excited states also display a profound biradical fingerprint allowing to singlet exciton fission. These properties are discussed in the context of the size of the zethrene core and of its substitution. The work encompasses all known long zethrenes and makes use of a variety of experimental techniques, such as Raman, UV-Vis-NIR absorption, transient absorption, in situ spectroelectrochemistry and quantum chemical calculations. This study reveals how the insertion of suitable molecular modules (i.e., quinoidal) opens the door to new intriguing molecular properties exploitable in organic electronics.
机译:着重介绍了基于zethrene的新型分子材料的电子和分子结构的分析,特别关注那些具有中心苯并喹啉核能够生成Kekulé双自由基的系统,其稳定性由该中心单元中的芳烃回收率提供。这些Kekulé双自由基通过双自旋极化显示单重态电子态,并具有低能量的三重态激发态,还具有芳香性增益。芳香化也是离子化物质稳定的驱动力。此外,低能量的单线态激发态也显示出深刻的双自由基指纹,从而允许单线态激子裂变。这些性质是在the蒽核心的大小及其取代的背景下讨论的。这项工作涵盖了所有已知的长并蒽,并利用了各种实验技术,例如拉曼光谱,紫外-可见-近红外吸收,瞬态吸收,原位光谱电化学和量子化学计算。这项研究揭示了如何插入合适的分子模块(即quinoidal)为有机电子中可利用的新的有趣分子特性打开大门。

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