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开壳层单重态分子体系的双自由基和离子特性

Diradical and Ionic Characters of Open-Shell Singlet Molecular Systems.

作者信息

Nakano Masayoshi, Fukuda Kotaro, Ito Soichi, Matsui Hiroshi, Nagami Takanori, Takamuku Shota, Kitagawa Yasutaka, Champagne Benoît

机构信息

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

Center for Spintronics Research Network (CSRN), Graduate School of Engineering Science, Osaka University , Toyonaka, Osaka 560-8531, Japan.

出版信息

J Phys Chem A. 2017 Feb 2;121(4):861-873. doi: 10.1021/acs.jpca.6b11647. Epub 2017 Jan 20.

Abstract

The diradical and ionic natures of open-shell singlet systems have been investigated using new definitions of the diradical and ionic characters as well as of their densities within the valence configuration interaction (VCI) model with two electrons in two active orbitals. The two-site symmetric and asymmetric diradical models are examined by using these diradical/ionic characters. For realistic compounds, we investigate a diradicaloid diphenalenyl and a rectangular graphene nanoflake in the presence of an external static electric field, as well as π-stacked phenalenyl-derivative dimers with varying the intermonomer distance, where the central carbon atoms in the phenalenyl rings are substituted by boron (B) and nitrogen (N) atoms, respectively. It is found that the increase of charge asymmetricity induced by the static electric field decreases the diradical character and finally induces an ionic character in the ground state, while the first excited state is changed from pure ionic to diradical-dominant as the field amplitude increases. On the other hand, when increasing the intermonomer distance, the B/N substitution in the phenalenyl dimer changes the electronic state from open-shell singlet with small diradical character to closed-shell with large ionic character. These results indicate that the application of a static electric field to diradicaloids and the asymmetric substitution of a pancake bonded π-dimer combined with the variation of intermonomer distance could tune the diradical/ionic characters and therefore control the nonlinear optical responses.

摘要

利用双自由基和离子特征及其在价层组态相互作用(VCI)模型(两个活性轨道中有两个电子)中的密度的新定义,研究了开壳单重态体系的双自由基和离子性质。通过使用这些双自由基/离子特征来检验两点对称和不对称双自由基模型。对于实际化合物,我们研究了在外部静电场存在下的双自由基类二并苯和矩形石墨烯纳米片,以及具有不同单体间距离的π堆积并苯衍生物二聚体,其中并苯环中的中心碳原子分别被硼(B)和氮(N)原子取代。研究发现,由静电场引起的电荷不对称性增加会降低双自由基特征,并最终在基态诱导出离子特征,而随着场强增加,第一激发态从纯离子态变为双自由基主导态。另一方面,当增加单体间距离时,并苯二聚体中的B/N取代会使电子态从具有小双自由基特征的开壳单重态变为具有大离子特征的闭壳态。这些结果表明,对双自由基类化合物施加静电场以及对煎饼状键合π二聚体进行不对称取代并结合单体间距离的变化,可以调节双自由基/离子特征,从而控制非线性光学响应。

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