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Effective bandgap engineering in wrinkled germanane Wa tiny electric field

机译:在起皱的锗烷Wa微小电场中有效的带隙工程

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Effective modulation of physical properties via external control is a tantalizing possibility that would bring two-dimensional material-based electronics a step closer. Following the recent experiments, we report a systematic investigation of the effect of external electric field (E-field) on electronic properties of wrinkled germanane based on first-principles calculations. Our results demonstrate that a rninuscule E-field can largely and continuously reduce the energy gap of wrinkled germanane. This goes beyond all existing two-dimensional materials, since the required E-field in wrinkled germanane is only a fraction of that for most existing two-dimensional materials. More interestingly, our data show that the promising band inversion can be obtained by modulation of strength of the tiny E-field due to the modification of electron distribution. Furthermore, the possible underlying physical mechanisms are discussed in detail. These results provide a new perspective on the formation of germanane-based electronic devices.
机译:通过外部控制对物理属性进行有效的调制是极具吸引力的可能性,它将使基于二维材料的电子产品更近一步。根据最近的实验,我们报告了基于第一性原理计算的外部电场(电场)对起皱的锗烷电子性质的影响的系统研究。我们的结果表明,微小的电场可以在很大程度上并持续减小起皱的锗烷的能隙。这超出了所有现有的二维材料的范围,因为起皱的锗烷所需的电场仅为大多数现有的二维材料的一小部分。更有趣的是,我们的数据表明,由于电子分布的改变,可以通过调制微小电场的强度来获得有希望的能带反转。此外,详细讨论了可能的潜在物理机制。这些结果为基于锗烷的电子设备的形成提供了新的视角。

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