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Generalized Breit-Wigner treatment of molecular transport: Charging effects in a single decanedithiol molecule

机译:普通的Breit-Wigner治疗分子运输:在单一癸二硫醇分子中的充电效应

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We examine the relative contribution of ballistic and elastic cotunneling mechanisms to the charge transport through a single decanedithiol molecule linked to two terminal clusters of gold atoms. For this, we first introduced a conceptual model that permits a generalization of the Breit-Wigner scattering formalism where the cation, anion, and neutral forms of the molecule can participate with different probabilities of the charge transfer process, but in a simultaneous manner. We used a density functional theory treatment and considered the fixed geometry of each charge state to calculate the corresponding eigenvalues and eigenvectors of the extended system for different values of the external electric field. We have found that for the ballistic transport the HOMO and LUMO of the neutral species play a key role, while the charged states give a negligible contribution. On the other hand, an elastic cotunneling charge transfer can occur whenever a molecular orbital (MO) of the cation or anion species, even if localized in just one side of the molecule-gold clusters complex, has energy close to that of a delocalized MO of the neutral species. Under these conditions, a conduction channel is formed throughout the entire system, in a process that is controlled by the degree of resonance between the MOs involved. Our results indicate that while different charge transfer mechanisms contribute to the overall charge transport, quantum effects such as avoided-crossing situations between relevant frontier MOs can be of special importance. In these specific situations, the interchange of spatial localization of two MOs involved in the crossing can open a new channel of charge transfer that otherwise would not be available. Published by AIP Publishing.
机译:我们研究了通过连接到两个末端金原子簇的单个癸二醇分子对电荷传输的相对贡献。为此,我们首先介绍了一种概念模型,允许分子的阳离子,阴离子和中性形式的阳离子,阴离子和中性形式可以参与电荷转移过程的不同概率,而是以同时的方式参与。我们使用了密度泛函理论处理,并考虑了每个充电状态的固定几何形状,以计算扩展系统的相应特征值和外部电场的不同值。我们发现,对于弹道运输中性物种的同性恋和Lumo发挥着关键作用,而指控状态则提供可忽略不计的贡献。另一方面,每当阳离子或阴离子物种的分子轨道(Mo),即使在分子金簇复合物的一侧局部局部时,也可以发生弹性Cotunneling电荷转移,使能量接近划分的Mo中性物种。在这些条件下,在整个系统中形成导通通道,在由所涉及的MOS之间的谐振程度控制的过程中。我们的结果表明,虽然不同的电荷转移机制有助于整体电荷运输,但相关边境MOS之间的避免交叉情况等量子效应可能具有特殊重要性。在这些具体情况下,交叉口涉及的两个MOD的空间定位的交换可以打开否则的新电荷传输通道,否则将无法使用。通过AIP发布发布。

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