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Electronic States of Lithium Passivated Germanium Nanowires: An ab-initio Study

机译:锂钝化锗纳米线的电子国家:AB-Initio研究

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A study of the electronic and structural properties of germanium nanowires (GeNWs) was performed using the ab-initio Density Functional Theory within the generalized gradient approximation where electron-ion interactions are described by ultrasoft pseudopotentials. To study the effects of the lithium in the surface of the GeNWs we compare the electronic band structures of Hydrogen passivated GeNWs with those of partial and totally Li passivated GeNWs. The nanowires were constructed in the [001], [111] and [110] directions, using the supercell model to create different wire diameters. The results show that in the case of partial Li passivation there are localized orbitals near the valence band maximum, which would create a pdoped-kind of state. The total Li passivation created metallic states for all the wires.
机译:使用AB-Initio密度函数理论在广义梯度近似内进行锗纳米线(GENW)的电子和结构性质的研究,其中电子离子相互作用由Ultrasoft伪能量描述。为了研究锂在流动表面中的锂的影响,我们将氢钝化基因的电子带结构与部分和完全Li钝化的基因进行比较。纳米线在[001],[111]和[110]方向上构造,使用超细电池模型来产生不同的线径。结果表明,在部分Li钝化的情况下,在价带附近的局部轨道最大值,这将产生一个庞的状态。 LI总钝化为所有电线创造了金属状态。

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