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A deterministic approach to the thermal synthesis and growth of 1D metal oxide nanostructures

机译:含有1D金属氧化物纳米结构的热合成和生长的确定性方法

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摘要

The 1D metal oxide nanostructures, including nanowires, are researched for at least two decades. However, the theoretical models on their synthesis and growth mechanisms are still controversial, even for the simplest growth method, namely thermal oxidation of a metallic surface. In this paper, the relevance analysis of the growth conditions reported in the literature is conducted, followed by the developed theoretical model, which was verified by our experiment on copper oxide nanowires. The model quantitatively describes the two most applied hypotheses concerning the single- and bi-crystalline growth of copper oxide nanowires. The numerical simulations reveal the conditions for both obtained mechanisms. It is also established that for the growth of the relatively thick nanowires associated with the single crystals, the internal energy of oxygen molecules determines the mechanism of oxygen adsorption. The energy can be re-distributed at the oxygen attachment, and the molecule can desorb at the account of this energy. Furthermore, the obtained result are also useful for developing the theory on nanowire seed generation, identifying the key control factors and basic mechanisms behind the growth modes, making a step toward a deterministic, highly predictable synthesis of dense 1D copper oxide nanostructures.
机译:研究包括纳米线的1D金属氧化物纳米结构至少二十年。然而,它们的合成和生长机制的理论模型仍然是争议的,即使对于最简单的增长方法,即金属表面的热氧化也是如此。在本文中,进行了文献中报告的生长条件的相关性分析,其次是开发的理论模型,通过我们在氧化铜纳米线上的实验验证。该模型定量地描述了关于氧化铜纳米线的单晶和双晶生长的两个最常用假设。数值模拟显示了所获得的机制的条件。还建立了一种用于与单晶相关的相对厚的纳米线的生长,氧分子的内部能量决定了氧气吸附的机理。能量可以在氧附着点重新分布,分子可以在这种能量的叙述中解吸。此外,所获得的结果也可用于在纳米线种子产生的理论中,鉴定生长模式后面的关键控制因子和基本机制,迈向致密1D氧化铜氧化物纳米结构的确定性,高度可预测的合成。

著录项

  • 来源
    《Applied Surface Science 》 |2021年第15期| 150619.1-150619.19| 共19页
  • 作者单位

    Natl Aerosp Univ Plasma Lab Kharkiv Ukraine|Jozef Stefan Inst Ljubljana Slovenia;

    Jozef Stefan Inst Ljubljana Slovenia|Jozef Stefan Int Postgrad Sch Ljubljana Slovenia;

    Jozef Stefan Inst Ljubljana Slovenia;

    Jozef Stefan Inst Ljubljana Slovenia|Jozef Stefan Int Postgrad Sch Ljubljana Slovenia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Copper oxide; Nanowires; Thermal growth;

    机译:氧化铜;纳米线;热生长;

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