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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Impact of Phonon Dispersion on Nonlocal Electron-Phonon Couplings in Organic Semiconductors: The Naphthalene Crystal as a Case Study
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Impact of Phonon Dispersion on Nonlocal Electron-Phonon Couplings in Organic Semiconductors: The Naphthalene Crystal as a Case Study

机译:旋转色散对有机半导体非局部电子 - 声子偶联的影响:萘晶作为案例研究

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Recent studies point to the impact that the dispersion of both optical and acoustic phonons can have on the nonlocal electron-phonon couplings in organic molecular semiconductors. Here, in order to further elucidate the influence of phonon dispersion, we have calculated the phonon modes in the entire Brillouin zone of the naphthalene crystal. The results demonstrate that the overall nonlocal couplings are underestimated by calculations in which only the phonon modes derived at the Brillouin zone center are considered. Moreover, the contributions of acoustic phonons to the overall strength of nonlocal electron phonon couplings are calculated to be quantitatively very significant for parallel stacked dimers, as high as 40% for holes and 47% for electrons.
机译:最近的研究指出了光学和声学声子的分散可以对有机分子半导体中的非局部电子 - 声子偶联的影响。 这里,为了进一步阐明声子分散的影响,我们已经计算了萘晶体的整个布里渊区中的声子模式。 结果表明,通过计算的计算,整个非局部耦合被估计,其中仅考虑在布里渊区中心导出的声子模式。 此外,对非局部电子声子耦合的总强度的贡献计算为定量非常显着,对于并联堆叠二聚体,高达40%的孔和47%的电子。

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