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Anisotropy in structural and optical properties of chemical vapor deposited ZnS

机译:化学气相沉积Zns的结构和光学性质的各向异性

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Significant anisotropy in as-deposited CVD ZnS at several length scales has been demonstrated through investigation of structural and optical properties. Compressive strength of cylinders of CVD ZnS oriented in the growth direction is ~50% higher than cylinders taken perpendicular to the growth direction. Lattice parameter measurements of mandrel side (first-to-grow) material is ~0.4% smaller than growth side (last-to-grow) material in a cored sample representing ~500 hours of CVD growth, indicating significant strain along the growth direction. X-ray diffraction also shows evidence of preferred orientations for hexagonality which differ depending on position in the growth history. In crosssection, the cored sample shows several large bands which are correlated with different degrees of infrared absorption and BTDF scattering. However, no universal trend is found that applies to the whole length from the mandrel to the growth side regarding optical properties. The extinction in the visible and infrared is lower for measurements perpendicular to the growth axis than parallel to it, possibly due to scattering from the growth bands.
机译:通过调查结构和光学性质,已经证明了在几个长度尺度下沉积的CVD Zns中的显着各向异性。在生长方向上取向的CVD Zns圆柱体的抗压强度比垂直于生长方向截取的圆柱体高约50%。心轴侧(第一生长)材料的晶格参数测量比表示〜500小时CVD生长的芯样品中的生长侧(最后生长)材料小于生长侧(最后生长)材料,表明沿生长方向显着应变。 X射线衍射还显示出六偏见的优选取向的证据,这取决于生长历史中的位置。在横截面中,芯样品显示出几个大带,其与不同的红外吸收和BTDF散射相关。然而,发现没有普遍趋势,其从心轴到具有关于光学性质的生长侧的整个长度。可见光和红外线中的灭绝较低,用于垂直于生长轴的测量比平行于其平行,可能是由于从生长带散射。

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