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首页> 外文期刊>Physics Letters, A >Ab initio study of the stability and electronic properties of wurtzite and zinc-blende BeS nanowires
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Ab initio study of the stability and electronic properties of wurtzite and zinc-blende BeS nanowires

机译:从头开始研究纤锌矿和亮锌BeS纳米线的稳定性和电子性能

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In this work we study the structural stability and electronic properties of the Beryllium sulfide nanowires (NWs) in zinc-blende (ZB) and wurtzite (WZ) phases (with triangle and hexagonal cross sections), using first principle calculations within the plane-wave pseudopotential method. A phenomenological model is used to explain the role of dangling bonds in the stability of the NWs. In contrast to the bulk phase, the ZB-NWs with diameters less than 133.3 ? are found to be less favorable over the WZ-NWs, in which the surface dangling bonds (DBs) on the NW facets play an important role to stabilize the NWs. Furthermore, both ZB- and WZ-NWs are predicted to be semiconductor and the values of the band gaps are dependent on the surface DBs as well as the size and shape of the NWs. Finally, we obtain atom projected density of states (PDOSs) by calculating the localized density of states on the surface atoms, as well as on the core and edge atoms.
机译:在这项工作中,我们使用平面波内的第一原理计算,研究了闪锌矿(ZB)和纤锌矿(WZ)相(具有三角形和六边形截面)中硫化铍纳米线(NWs)的结构稳定性和电子性能。伪电位法。现象学模型用于解释悬空键在西​​北偏西地区的稳定性中的作用。与本体相相比,ZB-NW的直径小于133.3?相对于WZ-NW,NW面的表面悬挂键(DBs)在稳定NW方面起着重要作用。此外,ZB-和WZ-NW均被预测为半导体,并且带隙的值取决于表面DB以及NW的大小和形状。最后,我们通过计算表面原子,核心原子和边缘原子上的局部状态密度来获得原子投影状态密度(PDOS)。

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