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首页> 外文期刊>Philosophical magazine: structure and properties of condensed matter >Electronic transport properties of silicon chains sandwiched between graphene electrodes: first-principles study
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Electronic transport properties of silicon chains sandwiched between graphene electrodes: first-principles study

机译:石墨烯电极夹在石墨烯电极中的硅链的电子传输性能:第一原理研究

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摘要

The effects of orientation and silicon chain length on the electronic transport properties for linear silicon chains sandwiched between two graphene electrodes are investigated by using non-equilibrium Green's functions combined with density functional theory. Our results demonstrate that the conductance of single silicon chains can hardly be affected by its orientation, as there is negligible difference between the conductance of tilted and un-tilted chains, and the conductance is impacted greatly by the length of chains, i.e. the transmission coefficient is doubled for double chains. The equilibrium conductance of single silicon chains shows even-odd oscillating behavior, and its tendency decreases with the increase of the chain length. The non-equilibrium electronic transport properties for all types of chains are also calculated, and all current-voltage curves of silicon chains show a linear character. The frontier molecular orbitals, the total and projected density of states are used to analyse the electronic transport properties for all types of chains.
机译:通过使用非平衡绿色的函数与密度泛函理论相结合,研究了取向和硅链长对夹在两个石墨烯电极之间的线性硅链的电子传输性能的影响。我们的结果表明,单个硅链的电导可能几乎不受其取向的影响,因为倾斜和未倾斜链的电导之间存在可忽略的差异,并且电导受到链长度的大大撞击,即透射系数双链加倍。单硅链的平衡导电显示均匀的振荡行为,随着链长的增加,其趋势降低。还计算了所有类型链的非平衡电子传输特性,并且硅链的所有电流曲线都显示了线性特征。前沿分子轨道,各种州的总和投影密度用于分析所有类型链的电子传输性能。

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