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一种新合成的红色荧光材料的电子和光谱性质研究。

Study of electronic and spectroscopic properties on a newly synthesized red fluorescent material.

作者信息

Liu Xiaojun, Ju Haidong, Zhao Xian, Tao Xutang, Bian Wensheng, Jiang Minhua

机构信息

State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, People's Republic of China.

出版信息

J Chem Phys. 2006 May 7;124(17):174711. doi: 10.1063/1.2189231.

Abstract

The ground state (S(0)) and the lowest singlet excited state (S(1)) of a newly synthesized red fluorescent material, 2-[3-(2-{4-[(2-Hydroxy-ethyl)-methyl-amino]-phenyl}-vinyl)-5,5-dimethyl-cyclohex-2-enylidene]-malononitrile (A31), are investigated. The S(0) and S(1) geometries are optimized at the ab initio Hartree-Fock and the singles configuration interaction (CIS) levels of theory, respectively. The CIS and semiempirical Zerner's Intermediate Neglect of Differential Overlap (ZINDO) methods provide the results for the absorption (S(0)-->S(1)) and emission (S(1)-->S(0)) transition energies. The Stokes shifts calculated at the CIS and ZINDO levels of theory are obtained. The absorption spectra in various solvents are calculated using the time-dependent density-functional theory method in combination with the polarized continuum model, which are in very good agreement with our experimental measurements. The solvent effects are discussed.

摘要

对新合成的红色荧光材料2-[3-(2-{4-[(2-羟乙基)-甲基氨基]-苯基}-乙烯基)-5,5-二甲基-环己-2-烯基]-丙二腈(A31)的基态(S(0))和最低单重激发态(S(1))进行了研究。分别在从头算Hartree-Fock理论水平和单激发组态相互作用(CIS)理论水平上对S(0)和S(1)的几何结构进行了优化。CIS和半经验的Zerner微分重叠忽略中间体(ZINDO)方法给出了吸收(S(0)→S(1))和发射(S(1)→S(0))跃迁能量的结果。得到了在CIS和ZINDO理论水平上计算的斯托克斯位移。使用含时密度泛函理论方法结合极化连续介质模型计算了各种溶剂中的吸收光谱,其与我们的实验测量结果非常吻合。并对溶剂效应进行了讨论。

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