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单重态多环二苯并[a,c]芴基自由基的二阶超极化率:中心杂环性质及二苯并[a,c]芴环取代的影响

Second hyperpolarizabilities of singlet polycyclic diphenalenyl radicals: effects of the nature of the central heterocyclic ring and substitution to diphenalenyl rings.

作者信息

Nakano Masayoshi, Nakagawa Nozomi, Kishi Ryohei, Ohta Suguru, Nate Masahito, Takahashi Hideaki, Kubo Takashi, Kamada Kenji, Ohta Koji, Champagne Benoît, Botek Edith, Morita Yasushi, Nakasuji Kazuhiro, Yamaguchi Kizashi

机构信息

Department of Materials Engineering Science, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.

出版信息

J Phys Chem A. 2007 Sep 20;111(37):9102-10. doi: 10.1021/jp0734676. Epub 2007 Aug 28.

Abstract

Adopting density functional theory and a hybrid exchange-correlation functional, the relationship between the second hyperpolarizability (gamma) and the diradical character has been investigated for diphenalenyl-based compounds containing different heterocyclic five-membered central rings (C(4)H(4)X, where X = NH, PH, O, S, CH(2), SiH(2), BH, GaH, C=O, C=S, and C=Se) or substituted by donor (NH(2))/acceptor(NO(2)) groups. It turns out that these structural modifications can tune the diradical character from 0.0 to 0.968 and lead to variations of gamma over more than 1 order of magnitude, demonstrating the controllability of gamma in this family of compounds. In particular, when the central ring is strongly aromatic, the diradical character is larger than 0.7, which is associated with pretty large gamma values except for almost the pure diradical case (y approximately 1). On the other hand, when the aromaticity decreases--or the antiaromaticity increases--the diradical character and the second hyperpolarizability get smaller. These relationships are correlated to structural (bond length alternation) and charge distribution (charge transfer between the phenalenyl rings and the central ring) properties, which account for the relative importance of the resonance diradical, zwitterionic, and quinoid forms. Therefore, the diradical character and the second hyperpolarizability can be controlled by the aromaticity of the ring while the paradigm of the enhancement of gamma for intermediate diradical character is globally verified. Then, upon introducing donor groups, the zwitterionic character increases, leading to closed-shell species and small second hyperpolarizabilities. In the case of substitution by acceptor groups, the charge transfer is reduced but the diradical character and the second hyperpolarizability hardly changes.

摘要

采用密度泛函理论和杂化交换关联泛函,研究了含有不同杂环五元中心环(C(4)H(4)X,其中X = NH、PH、O、S、CH(2)、SiH(2)、BH、GaH、C=O、C=S和C=Se)或被供体(NH(2))/受体(NO(2))基团取代的二苯并菲基化合物的二阶超极化率(γ)与双自由基特征之间的关系。结果表明,这些结构修饰可以将双自由基特征从0.0调节到0.968,并导致γ变化超过1个数量级,证明了该类化合物中γ的可控性。特别是,当中心环具有强芳香性时,双自由基特征大于0.7,除了几乎是纯双自由基情况(y约为1)外,这与相当大的γ值相关。另一方面,当芳香性降低或反芳香性增加时,双自由基特征和二阶超极化率变小。这些关系与结构(键长交替)和电荷分布(菲基环与中心环之间的电荷转移)性质相关,这解释了共振双自由基、两性离子和醌式结构的相对重要性。因此,双自由基特征和二阶超极化率可以通过环的芳香性来控制,同时中间双自由基特征增强γ的范式得到了全面验证。然后,引入供体基团时,两性离子特征增加,导致闭壳层物种和小的二阶超极化率。在用受体基团取代的情况下,电荷转移减少,但双自由基特征和二阶超极化率几乎不变。

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