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首页> 外文期刊>Journal of Crystal Growth >Self-catalytic branch growth of SnO2 nanowire junctions
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Self-catalytic branch growth of SnO2 nanowire junctions

机译:SnO2纳米线结的自催化分支生长

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摘要

Multiple branched SnO2 nanowire junctions have been synthesized by thermal evaporation of SnO powder. Their nanostructures were studied by transmission electron microscopy and field emission scanning electron microcopy. It was observed that Sn nanoparticles generated from decomposition of the SnO powder acted as self-catalysts to control the SnO2 nanojunction growth. Orthorhombic SnO2 was found as a dominate phase in nanojunction growth instead of rutile structure. The branches and stems of nanojunctions were found to be an epitaxial growth by electron diffraction analysis and high-resolution electron microscopy observation. The growth directions of the branched SnO, nanojunctions were along the orthorhombic [110] and [1 (1) over bar0]. A self-catalytic vapor-liquid-solid growth mechanism is proposed to describe the growth process of the branched SnO2 nanowire junctions. (C) 2004 Elsevier B.V. All rights reserved.
机译:通过热蒸发SnO粉末合成了多个分支的SnO2纳米线结。通过透射电子显微镜和场发射扫描电子显微镜研究了它们的纳米结构。观察到,由SnO粉末的分解产生的Sn纳米颗粒用作控制SnO2纳米结生长的自催化剂。正交晶SnO2被发现是纳米结生长中的主要相,而不是金红石结构。通过电子衍射分析和高分辨率电子显微镜观察发现纳米结的分支和茎是外延生长。支化的SnO,纳米结的生长方向沿着正交晶体[110]和[1(1)在bar0上]。提出了一种自催化气液固相生长机理,以描述分支的SnO2纳米线结的生长过程。 (C)2004 Elsevier B.V.保留所有权利。

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