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Direct observation of nanowire growth and decomposition

机译:直接观察纳米线的生长和分解

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摘要

Fundamental concepts of the crystal formation suggest that the growth and decomposition are determined by simultaneous embedding and removal of the atoms. Apparently, by changing the crystal formation conditions one can switch the regimes from the growth to decomposition. To the best of our knowledge, so far this has been only postulated, but never observed at the atomic level. By means of in situ environmental transmission electron microscopy we monitored and examined the atomic layer transformation at the conditions of the crystal growth and its decomposition using CuO nanowires selected as a model object. The atomic layer growth/decomposition was studied by varying an O2 partial pressure. Three distinct regimes of the atomic layer evolution were experimentally observed: growth, transition and decomposition. The transition regime, at which atomic layer growth/decomposition switch takes place, is characterised by random nucleation of the atomic layers on the growing {111} surface. The decomposition starts on the side of the nanowire by removing the atomic layers without altering the overall crystal structure, which besides the fundamental importance offers new possibilities for the nanowire manipulation. Understanding of the crystal growth kinetics and nucleation at the atomic level is essential for the precise control of 1D crystal formation.
机译:晶体形成的基本概念表明,生长和分解是通过同时嵌入和去除原子来确定的。显然,通过改变晶体形成条件,可以将生长方式从生长转变为分解。据我们所知,到目前为止,这仅是假定的,但从未在原子级观察到。通过原位环境透射电子显微镜,我们选择了CuO纳米线作为模型对象,对晶体生长和分解条件下的原子层转变进行了监测和检查。通过改变O 2分压来研究原子层的生长/分解。实验观察到三种不同的原子层演化机制:生长,过渡和分解。发生原子层生长/分解转换的过渡机制的特征是,生长的{111}表面上原子层的随机成核。在不改变整体晶体结构的情况下,通过去除原子层而在纳米线的侧面开始分解,这除了具有根本的重要性外,还为纳米线的操作提供了新的可能性。了解原子级的晶体生长动力学和成核对于精确控制一维晶体的形成至关重要。

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