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寡聚物晶体中电荷载流子与晶格振动的相互作用:从萘到并五苯。

Interaction of charge carriers with lattice vibrations in oligoacene crystals from naphthalene to pentacene.

机构信息

School of Chemistry and Biochemistry and Center for Organic Photonics and Electronics, Georgia Institute of Technology, 901 Atlantic Drive NW, Atlanta, Georgia 30332-0400, USA.

出版信息

J Am Chem Soc. 2010 Oct 20;132(41):14437-46. doi: 10.1021/ja1040732.

Abstract

A key feature of organic π-conjugated materials is the strong connection between their electronic and geometric structures. In particular, it has been recently demonstrated that nonlocal electron-vibration (electron-phonon) interactions, which are related to the modulation of the electronic couplings (transfer integrals) between adjacent molecules by lattice vibrations, play an important role in the charge-transport properties of organic semiconductors. Here, we use density functional theory calculations and molecular mechanics simulations to estimate the strength of these nonlocal electron-vibration couplings in oligoacene crystals as a function of molecular size from naphthalene through pentacene. The effect of each optical vibrational mode on the electronic couplings is evaluated quantitatively. The results point to a very strong coupling to both intermolecular vibrational modes and intramolecular (including high-frequency) modes in all studied systems. Importantly, our results underline that the amount of relaxation energy associated with nonlocal electron-phonon coupling decreases as the size of the molecule increases. This work establishes an original relationship between chemical structure and nonlocal vibrational coupling in the description of charge transport in organic semiconductor crystals.

摘要

有机 π 共轭材料的一个主要特点是其电子结构和几何结构之间的强连接。特别是,最近已经证明,非局域电子-振动(电子-声子)相互作用与晶格振动引起的相邻分子之间电子耦合(转移积分)的调制有关,在有机半导体的电荷输运性质中起着重要作用。在这里,我们使用密度泛函理论计算和分子力学模拟来估计从萘到并五苯的低聚并五苯晶体中非局域电子-振动耦合的强度作为分子尺寸的函数。定量评估了每种光学振动模式对电子耦合的影响。结果表明,在所研究的所有系统中,分子间振动模式和分子内(包括高频)模式都具有很强的耦合作用。重要的是,我们的结果强调,与非局域电子-声子耦合相关的弛豫能量的量随着分子尺寸的增加而减小。这项工作在描述有机半导体晶体中的电荷输运时,在化学结构和非局域振动耦合之间建立了一种原始的关系。

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