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Characterization of Zn_(1-x)MnP_xSe nanowires and nanoribbons with cation sublattice ordering

机译:Zn_(1-x)MnP_xSe纳米线和纳米带的阳离子亚晶格有序表征

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Characterization of Zn_(1-x)MnP_xSe nanowires grown by Au-catalyzed chemical vapor deposition (CVD) using transmission electron microscopy is reported. The nanostructures were found to grow in the form of nanowires, nanoribbons, and nanosaws. The fraction of manganese on the cation sublattice in the nanowires varied from x=0.1 to x=0.28. No correlation between Mn fraction and nanowire diameter was found for straight nanowires; however, in tapered nanowires the Mn fraction was found to increase as the diameter increased. The tapering, as well as the increase in Mn fraction, is likely caused by thin film deposition with a higher Mn fraction on the sides of the nanowires. Some of the nanoribbons were found to display extra diffraction spots at half-order positions in selected area diffraction. The half-order reflections were found to have originated from spontaneous atomic ordering of Mn and Zn on planes on the cation sublattice.
机译:报道了使用透射电子显微镜通过金催化化学气相沉积(CVD)生长的Zn_(1-x)MnP_xSe纳米线的表征。发现纳米结构以纳米线,纳米带和纳米锯的形式生长。纳米线中阳离子亚晶格上的锰含量从x = 0.1到x = 0.28不等。对于直的纳米线,未发现Mn分数与纳米线直径之间的相关性。然而,在锥形纳米线中,发现锰含量随直径增加而增加。逐渐变细以及Mn分数的增加很可能是由于在纳米线的侧面上具有较高的Mn分数的薄膜沉积引起的。发现某些纳米带在选定区域衍射的半阶位置显示出额外的衍射点。发现半阶反射源自阳离子亚晶格平面上Mn和Zn的自发原子排序。

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