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首页> 外文期刊>Physics Letters, A >Strain and chirality effects on the mechanical and electronic properties of silicene and silicane under uniaxial tension
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Strain and chirality effects on the mechanical and electronic properties of silicene and silicane under uniaxial tension

机译:单轴拉伸下应变和手性对硅和硅的机械和电子性能的影响

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We present first principles theory calculations on the mechanical and electronic properties of silicene and silicane structure under uniaxial tensile strain along different directions. Chirality effect is more significant in the mechanical properties of silicene than those of silicane. Different failure mechanisms are identified. A small band gap (up to 0.8 eV) is developed from zero with silicene structure under uniaxial tension and vanishes before the structure reaches its in-plane ultimate strength. However, a pre-existing band gap (2.39 eV) exists with silicane structure and decreases to zero with the increasing tensile strain without chirality effects.
机译:我们提出了关于硅和硅酮结构在不同方向上的单轴拉伸应变下的机械和电子性能的第一原理理论计算。硅树脂的手性效应在硅树脂的机械性能方面比硅树脂更显着。确定了不同的故障机制。在硅树脂结构的单轴张力作用下,带隙从零开始产生一个小的带隙(高达0.8 eV),并在结构达到其面内极限强度之前消失。但是,具有硅酮结构的现有带隙(2.39 eV)存在,并且随着拉伸应变的增加而减小至零,而没有手性效应。

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