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首页> 外文期刊>The Journal of Chemical Physics >Conduction of molecular electronic devices: Qualitative insights through atom-atom polarizabilities
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Conduction of molecular electronic devices: Qualitative insights through atom-atom polarizabilities

机译:分子电子设备的传导:通过原子-原子极化率的定性见解

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摘要

The atom-atom polarizability and the transmission probability at the Fermi level, as obtained through the source-and-sink-potential method for every possible configuration of contacts simultaneously, are compared for polycyclic aromatic compounds. This comparison leads to the conjecture that a positive atom-atom polarizability is a necessary condition for transmission to take place in alternant hydrocarbons without non-bonding orbitals and that the relative transmission probability for different configurations of the contacts can be predicted by analyzing the corresponding atom-atom polarizability. A theoretical link between the two considered properties is derived, leading to a mathematical explanation for the observed trends for transmission based on the atom-atom polarizability. (c) 2015 AIP Publishing LLC.
机译:对于多环芳族化合物,比较了通过源极-阱电位方法同时针对每种可能的接触构型获得的费米能级的原子-原子极化率和传输概率。这种比较导致推测,正原子-原子的极化率是在没有非键合轨道的交替碳氢化合物中进行传输的必要条件,并且可以通过分析相应的原子来预测接触的不同构型的相对传输概率。原子极化率。得出了两个考虑的性质之间的理论联系,从而导致了基于原子-原子极化率的透射趋势的数学解释。 (c)2015 AIP Publishing LLC。

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