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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Interaction of Charge Carriers with Lattice Vibrations in Organic Molecular Semiconductors: Naphthalene as a Case Study
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Interaction of Charge Carriers with Lattice Vibrations in Organic Molecular Semiconductors: Naphthalene as a Case Study

机译:电荷载体与有机分子半导体中晶格振动的相互作用:以萘为例

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摘要

Recent theoretical studies suggest that the modulation of the electronic couplings (transfer integrals) between adjacent molecules by lattice vibrations, i.e., the so-called nonlocal electron—phonon coupling, plays a key role in the charge-transport properties of molecular organic semiconductors. However, a detailed understanding of this mechanism is still missing. Here, we combine density functional theory calculations and molecular mechanics simulations and use a chemistry-based insight to derive the nonlocal electron—phonon coupling constants due to the interaction of charge carriers with the optical lattice vibrations in the naphthalene crystal. The results point to a very strong coupling to both translational and librational mtermolecular vibrational modes as well as to intramolecular modes. Along some crystal directions, the nonlocal interactions are found to be dominated by nontotally symmetric vibrational modes which lead to an alternation (Peierls-type dimerization) pattern. Importantly, we introduce two parameters that can be used: (i) to quantify the total strength of the nonlocal electron—vibration mechanism in the form of a reorganization energy term; and (ii) to define the extent of the thermal fluctuations of the electronic couplings. Interestingly, zero-point fluctuations are seen to be very significant.
机译:近期的理论研究表明,晶格振动对相邻分子之间电子耦合(传递积分)的调制,即所谓的非局部电子-声子耦合,在分子有机半导体的电荷传输性质中起着关键作用。但是,仍然缺少对该机制的详细了解。在这里,我们将密度泛函理论计算和分子力学模拟结合起来,并使用基于化学的见解来推导由于电荷载流子与萘晶体中光学晶格振动的相互作用而产生的非局部电子-声子耦合常数。结果表明与平移和自由分子振动模式以及分子内模式都非常强的耦合。沿着某些晶体方向,非局部相互作用被非完全对称的振动模式所控制,这导致了交替(Peierls型二聚化)模式。重要的是,我们引入了两个可以使用的参数:(i)以重组能量项的形式量化非局部电子的总强度-振动机理; (ii)定义电子耦合器的热波动程度。有趣的是,零点波动被认为是非常重要的。

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