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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electronic Nature of Nonlinear Optical Properties of a Symmetrical Two-Photon Absorbing Fluorene Derivative: Experimental Study and Theoretical Modeling
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Electronic Nature of Nonlinear Optical Properties of a Symmetrical Two-Photon Absorbing Fluorene Derivative: Experimental Study and Theoretical Modeling

机译:对称双光子吸收芴衍生物的非线性光学性能的电子性质:实验研究与理论建模

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摘要

A comprehensive experimental and theoretical study of linear photophysical properties, such as excited-state relaxation, two-photon absorption, and stimulated emission spectra of the symmetrical fluorene derivative 2,2'-((1E,1'E)-(9,9-diethyl-9H-fluorene-2,7-diyl)bis(ethene-2,1-diyl))bis(1-methyl-1H-pyrrole) (1), is presented. The steady-state absorption, fluorescence, excitation, and excitation anisotropy spectra of 1 in organic solvents of different polarities are investigated experimentally and modeled. The fluorescence solvatochromism of 1 suggests the occurrence of symmetry breaking in the first excited state. The nature of fast relaxation processes in the excited state of 1, with the characteristic times of several picoseconds, is investigated by transient absorption femtosecond pump-probe spectroscopy. The spectral properties of 1 are satisfactorily described by an essential-state model that, accounting for electron-vibration coupling and for polar solvation, addresses spectroscopic features not only in terms of band position and intensities but also in terms of band shapes. Specifically, we present the first calculation of frequency-resolved two-photon-excited fluorescence anisotropy spectra. Our results demonstrate that electron-vibration coupling and polar solvation quite naturally explain the puzzling experimental observation of large deviations of the anisotropies from the values expected on the basis of the relative orientation of the molecular transition dipole moments.
机译:对称芴衍生物2,2' - ((1E,1'e) - ((1e,1,9,9 - 提出 - 二甲基-9H-芴-2,7-二基)双(乙烯-2,1-二基))双(1-甲基-1H-吡咯)(1)。实验和建模地研究了不同极性有机溶剂中1的稳态吸收,荧光,激发和激发各向异性光谱。 1的荧光溶剂溶解度表明在第一激发态中发生对称性的发生。通过瞬态吸收飞秒泵探针光谱研究了瞬时吸收的速度下的兴奋状态下的快速松弛过程的性质,具有几种皮秒的特征时间。通过基本状态模型令人满意地描述1的光谱特性,即用于电子振动耦合和用于极性溶剂,不仅根据带位置和强度而且在带形状方面寻址光谱特征。具体地,我们介绍了频率分辨的双光子激发荧光各向异性谱的第一计算。我们的结果表明,电子 - 振动耦合和极性溶剂非常自然地解释了在基于分子转变偶极液的相对取向的基础上预期的各向异性偏差的令人难叫的实验。

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