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首页> 外文期刊>The Journal of Chemical Physics >Non-Condon effect on charge transport in dithiophene-tetrathiafulvalene crystal
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Non-Condon effect on charge transport in dithiophene-tetrathiafulvalene crystal

机译:非密码子对二噻吩-四硫富瓦烯晶体中电荷输运的影响

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摘要

Combining first-principles calculations and non-Condon charge transfer rates proposed by us recently [Y. Zhao and W. Z. Liang, J. Chem. Phys. 130, 034111 (2009)], we investigated non-Condon effect on charge carrier mobility of organic semiconductor dithiophene-tetrathiafulvalene (DT-TTF) crystal. The first-principles results reveal that only several high-frequency intramolecular vibrational modes dominate the reorganization energy, and the nuclear-coordinate dependence of electronic coupling prefers to perform an exponential or Gaussian property for most intermolecular modes rather than a linear one as assumed in conventional models. Furthermore, the electronic coupling of an isolated DT-TTF dimer is indeed affected by the surrounding molecules. The predicted non-Condon mobilities with use of the obtained structure parameters are always greater than those from Condon approximation, and the non-Condon dynamic disorder is not important for DT-TTF, which is also confirmed by molecular dynamics simulation. More interestingly, the bandlike property can be predicted under the hopping mechanism when the nuclear tunneling is incorporated.
机译:结合我们最近提出的第一性原理计算和非孔顿电荷转移率[Y. Zhao和W.Z. Liang,J.Chem。物理130,034111(2009)],我们研究了非孔顿效应对有机半导体二噻吩-四硫富富瓦烯(DT-TTF)晶体的载流子迁移率的影响。第一性原理结果表明,只有几种高频分子内振动模式主导着重组能量,并且电子耦合的核坐标依赖性更倾向于对大多数分子间模式表现出指数或高斯性质,而不是像常规中假定的那样表现出线性性质。楷模。此外,分离的DT-TTF二聚体的电子偶联确实受到周围分子的影响。使用获得的结构参数预测的非孔顿迁移率总是大于通过Condon近似得到的,并且非孔顿动力学紊乱对于DT-TTF并不重要,这也通过分子动力学模拟得到了证实。更有趣的是,当掺入核隧穿时,可以在跳变机制下预测带状性质。

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