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Non-Adiabatic Effects in Electron Tunneling in Molecular Junctions

机译:电子隧道中电子隧道中的非绝热作用

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Most models on electron transport in molecular junctions implicitly assume that there is only one potential energy surface (PES) involved in transport. The current and/or the voltage across the junction may invalidate this assumption in a number of important situations. We recently developed a model for the description of STM-induced unimolecular surface reactions as an electronic cotunneling process that takes explicitly into account the possibility of coupling of two PES via the interaction between the molecule and the electrode as described by the self-energy. In this contribution we extend our model in the framework of a theory of nonadiabatic tunneling developed by Zhu and Lin. Our results may be of importance in the context and current and voltage-induced processes in nano-junctions and also on a more fundamental level to broaden our understanding of the relationship between molecular conductance and electron transfer reactions.
机译:在分子交叉点上的电气传输上的大多数模型隐含地假设运输中只有一个势能表面(PE)。交叉点两端的电流和/或电压可以使许多重要情况下的这种假设无效。我们最近开发了一种模型,用于描述STM诱导的单分子表面反应作为电子Cotunneling过程,该方法明确考虑了通过分子与电极之间的相互作用耦合两种PE的可能性,如通过自我能量所描述的。在这一贡献中,我们在朱和林开发的非二极管隧道理论框架中扩展了我们的模型。我们的结果可能在纳米交叉点的上下文和电流和电压诱导的过程中具有重要性,并且还对更基本的水平来扩大我们对分子导率和电子转移反应之间的关系的理解。

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