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首页> 外文期刊>ACS nano >Atomic-Scale Observation of Vapor-Solid Nanowire Growth via Oscillatory Mass Transport
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Atomic-Scale Observation of Vapor-Solid Nanowire Growth via Oscillatory Mass Transport

机译:通过振荡质量传输的汽固纳米线生长的原子尺度观察。

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In situ atomic-scale transmission electron microscopy (TEM) can provide critical information regarding growth dynamics and kinetics of nanowires. A catalyst-aided nanowire growth mechanism has been well demonstrated by this method. By contrast, the growth mechanism of nanowires without catalyst remains elusive because of a lack of crucial information on related growth dynamics at the atomic level. Herein, we present a real-time atomic-scale observation of the growth of tungsten oxide nanowires through an environmental TEM. Our results unambiguously demonstrate that the vapor solid mechanism dominates the nanowire growth, and the oscillatory mass transport on the nanowire tip maintains the noncatalytic growth. Autocorrelation analysis indicates that adjacent nucleation events in the nanowire growth are independent of each other. These findings may improve the understanding of the vapor solid growth mechanism of nanowires.
机译:原位原子尺度透射电子显微镜(TEM)可以提供有关纳米线生长动力学和动力学的关键信息。该方法已经很好地证明了催化剂辅助的纳米线生长机理。相比之下,由于缺乏有关原子级相关生长动力学的关键信息,因此没有催化剂的纳米线的生长机理仍然难以捉摸。本文中,我们通过环境TEM实时观察了氧化钨纳米线生长的原子级观察。我们的结果清楚地表明,蒸汽固相机理主导着纳米线的生长,并且纳米线尖端上的振荡质量传递保持了非催化生长。自相关分析表明,纳米线生长中的相邻成核事件彼此独立。这些发现可以增进对纳米线的气相固体生长机理的理解。

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