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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Dissolution-recrystallization and regrowth mechanism of hydrothermally derived six faceted prismatic hexagonal ZnO microrods
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Dissolution-recrystallization and regrowth mechanism of hydrothermally derived six faceted prismatic hexagonal ZnO microrods

机译:Dissolution-recrystallization和再生热水地派生机制六个面棱镜六角氧化锌microrods

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摘要

Zinc oxide (ZnO) microstructures have been grown using simple hydrothermal method. X-ray data confirms well crystalline nature of obtained ZnO powder with hexagonal (wurtzite-type) crystal structure. Scanning electron microscopic observations reveals that the microstructure consists of well defined sharp prismatic hexagonal microrods with angular walls. The microrods grown with controllable diameter in the range of 1.2-1.5 mu m with length in the range of 8-10 mu m and grow along the [0 0 0 1] direction. The aspect ratio of ZnO microrods increases with increase in reaction time. It is due to the dissolution-recrystallization mechanism and regrowth process. Morphological observations confirm that the reaction time plays a vital role to determine dimensionality of the synthesized ZnO microrods. The photoluminescence (PL) spectrum of the as-grown ZnO nanostructure reveals a near-band-edge (NBE) emission peak (399 nm) and a blue emission peak (460 nm). The increase in reaction time reveals enhancement in photoluminescence intensity. (C) 2015 Elsevier GmbH. All rights reserved.
机译:氧化锌纳米微观结构一直在增长使用简单的水热法。确认好水晶获得氧化锌的性质粉与六角(wurtzite-type)水晶结构。观测表明,微观结构包含定义良好的锋利的棱镜与角六角microrods墙壁。microrods直径可控的增长范围1.2 - -1.5μm的长度范围内8 - 10μm和生长方向(0 0 0 1)。氧化锌microrods长宽比的增加增加反应时间。dissolution-recrystallization机制和再生过程。确认反应时间起着至关重要的作用确定合成的维度氧化锌microrods。频谱是成年人的氧化锌奈米结构揭示了一个near-band-edge (NBE发射峰(399)海里)和一个蓝色发射峰(460海里)。增加反应时间显示增强光致发光强度。GmbH是一家。

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