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Influence of electrostatic fields on molecular electronic structure: insights for interfacial charge transfer

机译:静电场对分子电子结构的影响:界面电荷转移的见解

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摘要

Molecular and interfacial electronic structure at organic semiconductor interfaces shows a rich and subtle dependence on short- and long-range electrostatic interactions. Interface dipoles can be controlled making use of the anisotropic charge distribution at the interface, often with direct consequences also for the molecular electronic structure. In this Perspective, we will discuss the emerging understanding of how local and collective electrostatic effects control energy level alignment and molecular electronic structure at organic semiconductor interfaces and highlight some of the ramifications for interfacial charge-transfer dynamics. Attention is paid to the validity of the underlying assumptions inherent to the classical electrostatic approach.
机译:有机半导体界面上的分子和界面电子结构显示出对短程和长程静电相互作用的丰富而微妙的依赖性。可以利用界面处的各向异性电荷分布来控制界面偶极子,这通常也直接影响分子电子结构。在本《观点》中,我们将讨论对局部和集体静电效应如何控制有机半导体界面处的能级排列和分子电子结构的新兴理解,并重点介绍界面电荷转移动力学的一些影响。注意经典静电方法固有的基本假设的有效性。

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