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Self-catalysed growth of zinc oxide nanowires

机译:氧化锌纳米线的自催化生长

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摘要

Single-crystal nanowires of zinc oxide were prepared by a novel self-seeded vapour-liquid-solid (VLS) growth method using ultrasonic spray-assisted chemical vapour deposition, in which liquid Zn droplets were used as,catalysts'. In this approach, a nanocrystalline seed layer was first deposited, by direct decomposition of a zinc acetate precursor solution, onto a glass substrate at a temperature slightly below the melting point (420 degrees C) of Zn. ZnO nanowires were subsequently grown at a temperature above the melting point of Zn. From transmission electron microscopy, solidified Zn/ZnO droplets were observed on the ends of the ZnO nanowires. A novel mechanism for self-seeded growth of ZnO by the 'vapour (Zn acetate)-liquid (Zn)-solid (ZnO)' growth mechanism is described. The main advantage of the method is that it is clean, since growth occurs in the absence of a second phase catalyst.
机译:采用新颖的自种蒸气-液-固(VLS)生长方法,采用超声喷雾辅助化学气相沉积法制备了氧化锌单晶纳米线,其中以液态锌小滴为催化剂。在这种方法中,首先通过将乙酸锌前体溶液直接分解,在略低于Zn熔点(420摄氏度)的温度下,将纳米晶种层沉积到玻璃基板上。 ZnO纳米线随后在高于Zn熔点的温度下生长。从透射电子显微镜观察,在ZnO纳米线的末端观察到固化的Zn / ZnO液滴。描述了一种通过“蒸气(乙酸锌)-液体(Zn)-固体(ZnO)”生长机制自发生长ZnO的新机制。该方法的主要优点是清洁,因为在没有第二相催化剂的情况下会发生生长。

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