Nakano Masayoshi, Kishi Ryohei, Nakagawa Nozomi, Ohta Suguru, Takahashi Hideaki, Furukawa Shin-Ichi, Kamada Kenji, Ohta Koji, Champagne Benoît, Botek Edith, Yamada Satoru, Yamaguchi Kizashi
Department of Materials Engineering Science, Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan.
J Phys Chem A. 2006 Mar 30;110(12):4238-43. doi: 10.1021/jp056672z.
The second hyperpolarizabilities of bisimidazole- and bistriazole-benzene compounds have been calculated at different levels of approximation to unravel the effects of diradical character as well as of charge and spin multiplicity. The largest second hyperpolarizabilities are associated with intermediate diradical character, provided positive charging does not compensate for this effect. For the neutral diradical bisimidazole compound, the singlet diradical species possesses a second hyperpolarizability two to three times larger than the corresponding triplet, demonstrating the possibility of spin state control of the third-order NLO responses for diradical species.
已在不同近似水平下计算了双咪唑和双三唑苯化合物的二阶超极化率,以揭示双自由基特性以及电荷和自旋多重性的影响。只要正电荷不能抵消这种效应,最大的二阶超极化率就与中间双自由基特性相关。对于中性双自由基双咪唑化合物,单重态双自由基物种的二阶超极化率比相应的三重态大两到三倍,这表明双自由基物种的三阶非线性光学响应存在自旋态控制的可能性。