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环外取代基和π体系长度对奇奇巴宾双自由基(类)电子结构的影响。

Effect of Exocyclic Substituents and π-System Length on the Electronic Structure of Chichibabin Diradical(oid)s.

作者信息

Escayola Sílvia, Callís Marc, Poater Albert, Solà Miquel

机构信息

Institut de Química Computacional i Catàlisi and Departament de Química, Universitat de Girona, C/Maria Aurèlia Capmany, 69, 17003 Girona, Catalonia, Spain.

出版信息

ACS Omega. 2019 Jun 21;4(6):10845-10853. doi: 10.1021/acsomega.9b00916. eCollection 2019 Jun 30.

Abstract

The ground state (GS) of Chichibabin's polycyclic hydrocarbons (CPHs) can be singlet [open- or closed-shell (OSS or CS)] or triplet (T), depending on the elongation of the π-system and the exocyclic substituents. CPHs with either a small singlet-triplet energy gap (Δ ) or even a triplet GS have potential applications in optoelectronics. To analyze the effect of the size and exocyclic substituents on the nature of the GS of CPHs, we have selected a number of them with different substituents in the exocyclic carbon atoms and different ring chain lengths. The OPBE/cc-pVTZ level of theory was used for the optimization of the systems. The aromaticity of the resulting electronic structures was evaluated with HOMA, NICS, FLU, PDI, I, and MCI aromaticity indices. Our results show that the shortest π-systems (one or two rings) have a singlet GS. However, systems with three to five rings favor OSS GSs. Electron-withdrawing groups (EWGs) and aromatic substituents in the exocyclic carbons tend to stabilize the OSS and T states, whereas electron-donating groups slightly destabilize them. For CS, OSS, and T states, aromaticity measures indicate a gain of aromaticity of the 6-membered rings of the CPHs with the increase in their size and when CPHs incorporate EWGs or aromatic substituents. In general, the CPHs analyzed present small singlet-triplet energy gaps, and in particular, the ones containing EWGs or aromatic substituents present the smallest singlet-triplet energy gaps.

摘要

奇恰宾多环烃(CPHs)的基态(GS)可以是单线态[开壳层或闭壳层(OSS或CS)]或三线态(T),这取决于π体系的延伸和环外取代基。单线态-三线态能隙(Δ)较小甚至基态为三线态的CPHs在光电子学中有潜在应用。为了分析尺寸和环外取代基对CPHs基态性质的影响,我们选择了一些在环外碳原子上具有不同取代基和不同环链长度的CPHs。理论水平采用OPBE/cc-pVTZ对体系进行优化。用HOMA、NICS、FLU、PDI、I和MCI芳香性指数评估所得电子结构的芳香性。我们的结果表明,最短的π体系(一个或两个环)具有单线态基态。然而,具有三到五个环的体系倾向于OSS基态。环外碳原子上的吸电子基团(EWGs)和芳香取代基倾向于稳定OSS和T态,而供电子基团则会使其略有不稳定。对于CS、OSS和T态,芳香性测量表明,随着CPHs尺寸的增加以及CPHs引入EWGs或芳香取代基,其六元环的芳香性增加。一般来说,所分析的CPHs具有较小的单线态-三线态能隙,特别是含有EWGs或芳香取代基的CPHs具有最小的单线态-三线态能隙。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/636c/6648453/9f839ef235c5/ao-2019-00916n_0005.jpg

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