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OBO荧光团的光学特征:理论分析

Optical Signatures of OBO Fluorophores: A Theoretical Analysis.

作者信息

Chibani Siwar, Charaf-Eddin Azzam, Mennucci Benedetta, Le Guennic Boris, Jacquemin Denis

机构信息

Laboratoire CEISAM, UMR CNRS 6230, Université de Nantes , 2 Rue de la Houssinière, BP 92208, 44322 Nantes Cedex 3, France.

Department of Chemistry, University of Pisa , Via Risorgimento 35, 56126 Pisa, Italy.

出版信息

J Chem Theory Comput. 2014 Feb 11;10(2):805-15. doi: 10.1021/ct4009848.

Abstract

Dioxaborines dyes, based on the OBO atomic sequence, constitute one promising series of molecules for both organic electronics and bioimaging applications. Using Time-Dependent Density Functional Theory, we have simulated the optical signatures of these fluoroborates. In particular, we have computed the 0-0 energies and shapes of both the absorption and the emission bands. To assess the importance of solvent effects three polarization schemes have been applied within the Polarizable Continuum Model: the linear-response (LR), the corrected linear-response (cLR), and the state-specific (SS). We show that the SS approach is unable to yield consistent chemical trends for these challenging compounds that combine charge-transfer and cyanine characters. On the contrary, LR and cLR are more effective in reproducing chemical trends in OBO dyes. We have applied our computational protocol not only to analyze the signatures of existing dyes but also to design structures with red-shifted absorption and emission bands.

摘要

基于OBO原子序列的二氧硼杂环戊二烯染料,对于有机电子学和生物成像应用而言,是一类很有前景的分子。利用含时密度泛函理论,我们模拟了这些氟硼酸盐的光学特征。特别地,我们计算了吸收带和发射带的0-0能量及形状。为评估溶剂效应的重要性,在极化连续介质模型中应用了三种极化方案:线性响应(LR)、校正线性响应(cLR)和态特异性(SS)。我们表明,对于这些兼具电荷转移和花青特征的具有挑战性的化合物,SS方法无法产生一致的化学趋势。相反,LR和cLR在重现OBO染料的化学趋势方面更有效。我们不仅应用计算方法来分析现有染料的特征,还用于设计具有红移吸收和发射带的结构。

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