Institute of Applied Synthetic Chemistry, Vienna University of Technology, Getreidemarkt 9, 1060 Vienna, Austria.
Chemphyschem. 2013 Apr 2;14(5):1016-24. doi: 10.1002/cphc.201201006. Epub 2013 Feb 26.
Substituted oligothiophenes have a long history in the field of organic electronics, as they often combine outstanding electro-optical properties with the ease of synthesis. To assist the rational selection of the most promising structures to be synthesized, there is the demand for tools that allow prediction of the properties of the materials. In this study, we present strategies for synthesis and computational characterization, with respect to the fluorescence behavior of oligothiophene-based materials for organoelectronic applications. In a combined approach, sophisticated computational methodologies are directly compared to experimental results. The M06-2X functional in combination with the polarizable continuum model in a state-specific formulation for excited-state solvation proved to be particularly reliable. In addition, a semiclassical approach for describing the vibrational broadening of the spectra is employed. As a result, a robust procedure for the prediction of the fluorescence spectra of oligothiophene derivatives is presented.
取代的寡聚噻吩在有机电子学领域有着悠久的历史,因为它们通常将出色的光电性能与易于合成相结合。为了协助合理选择最有前途的要合成的结构,需要有能够预测材料性能的工具。在这项研究中,我们提出了针对基于寡聚噻吩的材料的合成和计算特性的策略,这些材料用于有机电子应用中的荧光行为。通过综合方法,将复杂的计算方法与实验结果直接进行比较。结果表明,M06-2X 函数与激发态溶剂化的特定状态的极化连续体模型相结合特别可靠。此外,还采用了一种用于描述光谱振动展宽的半经典方法。因此,提出了一种用于预测寡聚噻吩衍生物荧光光谱的可靠方法。