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Pressure-driven phase transitions and reduction of dimensionality in 2D silicon nanosheets

机译:压力驱动的相变和二维硅纳米片尺寸的减小

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摘要

In-situ high-pressure synchrotron X-ray powder diffraction studies up to 21 GPa of CVD-grown silicon 2D-nanosheets establish that the structural phase transitions depend on size and shape. For sizes between 9.3(7) nm and 15.2(8) nm we observe an irreversible phase transition sequence from I (cubic) → II (tetragonal) → V (hexagonal) during pressure increase and during decompression below 8 GPa the emergence of an X-ray amorphous phase. High-angle annular dark field scanning transmission electron microscopy (HAADF-STEM) and atomic force microscopy (AFM) images of this X-ray amorphous phase reveal the formation of significant numbers of 1D nanowires with aspect ratios > 10, which are twinned and grow along the <111> direction. We discovered a reduction of dimensionality under pressure from a 2D morphology to a 1D wire in a material with a diamond structure. MD simulations indicate the reduction of thermal conductivity in such nanowires.
机译:CVD生长的硅2D纳米片的高达21 GPa的原位高压同步加速器X射线粉末衍射研究表明,结构相变取决于尺寸和形状。对于介于9.3(7)nm和15.2(8)nm之间的尺寸,我们观察到在压力增加和低于8 GPa的减压过程中,I(立方)→II(四边形)→V(六边形)发生不可逆的相变序列。 -射线非晶相。 X射线无定形相的高角度环形暗场扫描透射电子显微镜(HAADF-STEM)和原子力显微镜(AFM)图像显示,长宽比aspect> 10的大量一维纳米线已形成并成对生长。沿<111>方向。我们发现具有金刚石结构的材料在压力下尺寸从2D形态减小到1D线。 MD模拟表明这种纳米线的热导率降低。

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