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TPD吸收与光致发光线形之间的不对称性:扭曲联苯核心的光谱指纹。

Asymmetry between absorption and photoluminescence line shapes of TPD: spectroscopic fingerprint of the twisted biphenyl core.

作者信息

Scholz Reinhard, Gisslén Linus, Himcinschi Cameliu, Vragović Igor, Calzado Eva M, Louis Enrique, San Fabián Maroto Emilio, Díaz-García María A

机构信息

Walter Schottky Institut, Technische Universität München, D-85748 Garching, Germany.

出版信息

J Phys Chem A. 2009 Jan 8;113(1):315-24. doi: 10.1021/jp806939q.

Abstract

We analyze absorption, photoluminescence (PL), and resonant Raman spectra of N,N'-diphenyl-N,N'-bis(3-methylphenyl)-(1,1'-biphenyl)-4,4'-diamine (TPD), with the aim of providing a microscopic interpretation of a significant Stokes shift of about 0.5 eV that makes this material suitable for stimulated emission. The optical spectra were measured for TPD dissolved in toluene and chloroform, as well as for polystyrene films doped with varying amounts of TPD. In addition, we measured preresonant and resonant Raman spectra, giving direct access to the vibrational modes elongated in the relaxed excited geometry of the molecule. The experimental data are interpreted with calculations of the molecular geometry in the electronic ground state and the optically excited state using density functional theory. Several strongly elongated high-frequency modes within the carbon rings results in a vibronic progression with a calculated spacing of 158 meV, corroborated by the observation of vibrational sidebands in the PL spectra. The peculiarities of the potential energy surfaces related to a twisting around the central bond in the biphenyl core of TPD allow to quantify the asymmetry between the line shapes observed in absorption and emission.

摘要

我们分析了N,N'-二苯基-N,N'-双(3-甲基苯基)-(1,1'-联苯)-4,4'-二胺(TPD)的吸收光谱、光致发光(PL)光谱和共振拉曼光谱,目的是对约0.5 eV的显著斯托克斯位移进行微观解释,这使得该材料适用于受激发射。测量了溶解在甲苯和氯仿中的TPD以及掺杂不同量TPD的聚苯乙烯薄膜的光谱。此外,我们测量了预共振和共振拉曼光谱,可直接获取分子弛豫激发几何结构中伸长的振动模式。利用密度泛函理论对电子基态和光激发态的分子几何结构进行计算,对实验数据进行了解释。碳环内几个强烈伸长的高频模式导致了一个振动进展,计算出的间距为158 meV,PL光谱中振动边带的观测证实了这一点。与TPD联苯核心中围绕中心键的扭转相关的势能面的特性,使得能够量化在吸收和发射中观察到的线形之间的不对称性。

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