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亚甲基桥连低聚芴的振动光谱与光学光谱的理论研究

Theoretical study of vibrational and optical spectra of methylene-bridged oligofluorenes.

作者信息

Lukes Vladimír, Aquino Adelia, Lischka Hans

机构信息

Department of Chemical Physics, Slovak University of Technology, Radlinského 9, SK-81 237 Bratislava, Slovakia.

出版信息

J Phys Chem A. 2005 Nov 17;109(45):10232-8. doi: 10.1021/jp054248s.

Abstract

We report a systematic characterization of methylene-bridged fluorene oligomers constructed of two, four, six, and eight aromatic rings using time-dependent density functional theory (TDDFT), the ab initio approximate coupled-cluster singles and doubles (CC2) method, and semiempirical spectroscopic Zerner's intermediate neglect of differential overlap method (ZINDO/S). Geometry optimizations have been performed for the ground state and for the first electronically excited state. Vertical excitations and the fluorescence transition from the lowest excited state have been calculated. Computed ground-state geometries and infrared spectra for fluorene are in good agreement with experimental results. The RI-CC2 and ZINDO/S absorption and fluorescence spectra agree very well with the available experimental data for studied fluorene oligomers and for para oligophenylenes films. On the other hand, TDDFT calculations underestimate excitation and fluorescence energies systematically for larger systems (N > 4) in comparison with the above-mentioned results. The effective conjugation length was estimated to 13-14 repeat units. The computed radiative lifetimes for the fluorene molecule show good agreement with experiment within realistic expectations. The decrease of the radiatiave fluorescence lifetime with the increase in the conjugation length has been discussed also.

摘要

我们使用含时密度泛函理论(TDDFT)、从头算近似耦合簇单双激发(CC2)方法以及半经验光谱的泽纳微分重叠忽略中间法(ZINDO/S),对由两个、四个、六个和八个芳环构成的亚甲基桥连芴低聚物进行了系统表征。对基态和第一电子激发态进行了几何优化。计算了垂直激发以及从最低激发态的荧光跃迁。计算得到的芴的基态几何结构和红外光谱与实验结果吻合良好。RI - CC2和ZINDO/S吸收光谱及荧光光谱与所研究的芴低聚物和对聚亚苯基薄膜的现有实验数据非常吻合。另一方面,与上述结果相比,对于更大的体系(N > 4),TDDFT计算系统地低估了激发能和荧光能。有效共轭长度估计为13 - 14个重复单元。计算得到的芴分子的辐射寿命在合理预期范围内与实验结果吻合良好。还讨论了辐射荧光寿命随共轭长度增加而降低的情况。

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