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Structure-dependent growth control in nanowire synthesis via on-film formation of nanowires

机译:通过膜上形成纳米线的纳米线合成中结构依赖的生长控制

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摘要

On-film formation of nanowires, termed OFF-ON, is a novel synthetic approach that produces high-quality, single-crystalline nanowires of interest. This versatile method utilizes stress-induced atomic mass flow along grain boundaries in the polycrystalline film to form nanowires. Consequently, controlling the magnitude of the stress induced in the films and the microstructure of the films is important in OFF-ON. In this study, we investigated various experimental growth parameters such as deposition rate, deposition area, and substrate structure which modulate the microstructure and the magnitude of stress in the films, and thus significantly affect the nanowire density. We found that Bi nanowire growth is favored in thermodynamically unstable films that facilitate atomic mass flow during annealing. A large film area and a large thermal expansion coefficient mismatch between the film and the substrate were found to be critical for inducing large compressive stress in a film, which promotes Bi nanowire growth. The OFF-ON method can be routinely used to grow nanowires from a variety of materials by tuning the material-dependent growth parameters.
机译:膜上形成纳米线(称为OFF-ON)是一种新颖的合成方法,可生产出感兴趣的高质量单晶纳米线。这种通用的方法利用应力诱导的原子质量流沿着多晶膜中的晶界形成纳米线。因此,在OFF-ON条件下,控制膜中引起的应力的大小和膜的微观结构很重要。在这项研究中,我们研究了各种实验生长参数,例如沉积速率,沉积面积和基底结构,这些参数可调节薄膜的微观结构和应力大小,从而显着影响纳米线的密度。我们发现Bi纳米线的生长在热力学不稳定的薄膜中得到了促进,该薄膜在退火过程中促进了原子质量的流动。发现大的膜面积和大的膜与基材之间的热膨胀系数失配对于在膜中引起大的压应力至关重要,这会促进Bi纳米线的生长。通过调节与材料有关的生长参数,OFF-ON方法可以常规用于从多种材料中生长纳米线。

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