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combined MD/QM and experimental exploration of conformational richness in branched oligothiophenes

机译:综合核苷酸综合性丰富的组合MD / QM及实验探索

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摘要

Infrared (IR) absorption and vibrational Raman spectra of a family of branched oligothiophenes have been determined experimentally as well as theoretically. The molecular spectra have been compared to those of the linear analogues, with identification made of spectral features due to structural properties that are valued in organic solar cell applications. The theoretical spectra have been obtained through a newly developed method in which individual conformer spectra, calculated at the time-dependent DFT level in this work, are weighted by statistics extracted from classical molecular dynamics trajectories. The agreement with experiment for the resulting averaged spectra is at least as good as, and often better than, what is observed for Boltzmann-weighted spectra. As the weights are available before the costly step of spectrum calculation, the method has the additional advantage of enabling efficient approximations. For simulating the molecular dynamics of the studied α,β-linked thiophenes and 2-methylthiophenes, high quality parameters have been derived for the CHARMM force field. Furthermore, the temperature dependence of the IR and Raman spectra has been investigated, both experimentally and theoretically.
机译:在实验上以及理论上已经确定了一系列分支寡核蛋白家族的红外(IR)吸收和振动拉曼光谱。将分子光谱与线性类似物的相比,由于在有机太阳能电池应用中的结构性能而具有光谱特征的识别。通过新开发的方法获得了理论光谱,其中在该工作中的时间依赖于时间依赖于时间的DFT水平下计算的单个塑料光谱被从经典分子动力学轨迹中提取的统计数据加权。对于所得的平均光谱的实验协议至少与博尔兹曼加权光谱观察到的那样好。由于在频谱计算的昂贵步骤之前的权重,该方法具有启用有效近似的额外优势。为了模拟所研究α,β-连接的噻吩和2-甲基硫烯烯烃的分子动力学,已经为Charmm力场得出的高质量参数。此外,在实验和理论上研究了IR和拉曼光谱的温度依赖性。

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