首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The effect of atomic arrangement on photoabsorption of freestanding double-layer honeycomb sheets of zinc selenide
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The effect of atomic arrangement on photoabsorption of freestanding double-layer honeycomb sheets of zinc selenide

机译:原子布置对自由控制双层蜂窝锌锌硒化型蜂窝板的影响

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摘要

The recently synthesized freestanding four-atom-thick double-layer sheet of ZnSe is a promising material for next-generation ultrathin optoelectronic nanodevices. In this theoretical work, we report two other novel double-layer sheets of ZnSe, with similar stability but distinct structures. These two new double-layer sheets of ZnSe could be considered by cutting along the wurtzite (WZ) bulk instead of the zinc blende (ZB) bulk. All these three layered sheets demonstrate a significantly strong quantum confinement effect, showing a large enhancement of the band gap compared with their three-dimensional (3D) bulks, by state-of-the-art calculations based on quasiparticle GW and the Bethe-Salpeter equation. Furthermore, the optical absorbance shows that the atomic arrangements of these three double-layer sheets of ZnSe play a significant role in the respective distinct photoabsorption behaviors, potentially important for a wealth of applications including solar water splitting.
机译:最近合成的独立式四个原子厚的双层锌是下一代超薄光电纳米型的有希望的材料。 在这个理论上的工作中,我们报告了另外两种新型双层ZnSe,具有相似的稳定性但不同的结构。 通过沿着紫立岩(WZ)块代替锌融合(ZB)散装,可以考虑这两个新的双层ZnSe。 所有这三张层状纸张都表现出明显强烈的量子限制效果,而基于Quasiparticle GW和贝特 - 排雷计的最新计算 方程。 此外,光学吸光度表明,这三个双层ZnSe的原子布置在相应的不同光吸收行为中起着重要作用,对于大量应用可能是太阳能分裂的应用。

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