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Sixfold self-assembled hierarchical structures synthesized by direct annealing of Zn microtips

机译:锌微尖端直接退火合成的六倍自组装层次结构

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A facile route and the related mechanism for forming sixfold core-shell hierarchical structure with well-defined anisotropic three-dimensional arrays have been described. The regularity and symmetry of hierarchical structures prepared by annealing Zn microtips are superior to the random nanostructure arrays formed in general vapor system reported in the literature. Owing to the distinct stress distribution on the topography of microtips during annealing, the mechanism for growing branched zinc oxide (ZnO) nanowhiskers is related to the relaxation of stress. In addition, the self-assembled hierarchical structures with naturally good contact results in a lowered energy barrier between Zn metal and ZnO semiconductor, which in turn gives a much better emission property. (C) 2008 Published by Elsevier Inc.
机译:已经描述了形成具有明确定义的各向异性三维阵列的六重核-壳层级结构的简便路线和相关机制。通过退火锌微尖端制备的分层结构的规则性和对称性优于文献报道的在一般蒸汽系统中形成的随机纳米结构阵列。由于退火过程中微尖端形貌上的应力分布明显不同,支化氧化锌(ZnO)纳米晶须的生长机理与应力松弛有关。此外,具有自然良好接触的自组装分层结构会导致Zn金属与ZnO半导体之间的能垒降低,进而提供更好的发射性能。 (C)2008由Elsevier Inc.出版

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