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Effect of dipole moment on current-voltage characteristics of single molecules

机译:偶极力矩对单分子电流 - 电压特性的影响

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We perform empirical calculations of the tunneling current through various small organic molecules sandwiched between gold electrodes by using the Wenzel-Kramers-Brillouin (WKB) approximation. The barrier to tunneling is taken to be the work function of gold and calculated from a first principles electronic structure code. The current-voltage characteristics of these molecules are compared in the context of existing first principles and experimental results. In this model the surface dipole moment, induced by the adsorbed molecule, can have a significant effect on the current and hence dipole moments may be an important property for prediction of the conductance characteristics of a molecule.
机译:我们通过使用Wenzel-Kramers-Brillouin(WKB)近似来执行通过夹在金电极之间的各种小有机分子的隧道电流的经验计算。 隧道的屏障被认为是金的功函数,并从第一原理计算电子结构代码计算。 在现有的第一个原理和实验结果的背景下比较这些分子的电流 - 电压特性。 在该模型中,由吸附分子诱导的表面偶极力矩可以对电流产生显着影响,因此偶极矩可能是用于预测分子的电导特性的重要性质。

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