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Gate-tunable step-like current through a single-molecule junction

机译:通过单分子结的栅极可调阶跃电流

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摘要

Using the kinetic approach, analytical expressions are obtained for the sequential and direct tunneling components of the current in a molecular junction, where the molecule acts as a mediator for interelectrode electron transfer. Within the framework of the modified HOMO-LUMO model, it is shown that the current components are not independent even with weak interaction of the molecule with the electrodes but are interrelated kinetically through processes that lead to the occupation of the electronic states of a charged and neutral molecule. As an application of the theory, the critical voltages determining the ranges of resonant steplike electron transfer through a junction with a planar ZnPc molecule are estimated. The values of the gate voltages at which the junction is capable of performing the functions of photoemitter are presented.
机译:用动力学方法,分析表达式获得了连续和直接隧道的当前组件分子结,充当一个分子电极间的电子转移的中介。HOMO-LUMO框架内的修改模型,结果表明,当前组件并不是独立的弱相互作用的分子与电极,但通过流程相互关联的活动导致电子态的占领带电的中性分子。应用理论、临界电压确定共振steplike的范围通过结与电子转移平面ZnPc分子估计。门电压的结执行的功能的能力photoemitter。

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