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Spontaneous ripple formation in phosphorene: electronic properties and possible applications

机译:自发phosphorene波纹的形成:电子性质和可能的应用

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摘要

According to the Mermin-Wagner theorem and theory of elasticity, long-range order in two-dimensional (2D) crystals will be inevitably destroyed due to a thermal fluctuation. Thus, a 2D lattice prefers a corrugation meaning that a 2D crystal is easy to present a ripple. In this work, we, via employing ab initio molecular dynamics (AIMD) simulations, for the first time evidenced that the inherent dynamics of phosphorene would lead to a spontaneous formation of ripples at room temperature. The height of a ripple closely associates with the temperature and the width. Via density functional theory (DFT) calculations, we further demonstrated that the emergence of ripples would remarkably reduce the bandgap of phosphorene. Via the construction of the unique phosphorene structure, we finally found that such a rippled structure is expected to be used in the light-emitting field. These results give us further knowledge of phosphorene, which goes beyond the current scope of phosphorene limited to the flat lattice.
机译:根据Mermin-Wagner定理和理论弹性、远程秩序二维(2 d)晶体将不可避免摧毁了由于热波动。二维晶格喜欢起皱这意味着一个二维晶体容易波动。工作中,我们通过雇佣从头开始分子动力学(AIMD)模拟,第一次证明的内在动力phosphorene将导致自发形成在室温下的涟漪。脉动与温度紧密关联和宽度。(DFT)计算,我们进一步证明波纹的出现将会显著减少phosphorene的能带。独特的phosphorene结构,我们终于发现这样一个波及结构预计在发光领域使用。结果给我们进一步的phosphorene知识,它超越当前的范围phosphorene限于平面点阵。

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