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协同纳米线生长

Synergetic nanowire growth.

作者信息

Borgström Magnus T, Immink George, Ketelaars Bas, Algra Rienk, Bakkers Erik P A M

出版信息

Nat Nanotechnol. 2007 Sep;2(9):541-4. doi: 10.1038/nnano.2007.263. Epub 2007 Sep 2.

Abstract

Interest in nanowires continues to grow because they hold the promise of monolithic integration of high-performance semiconductors with new functionality into existing silicon technology. Most nanowires are grown using vapour-liquid-solid growth, and despite many years of study this growth mechanism remains under lively debate. In particular, the role of the metal particle is unclear. For instance, contradictory results have been reported on the effect of particle size on nanowire growth rate. Additionally, nanowire growth from a patterned array of catalysts has shown that small wire-to-wire spacing leads to materials competition and a reduction in growth rates. Here, we report on a counterintuitive synergetic effect resulting in an increase of the growth rate for decreasing wire-to-wire distance. We show that the growth rate is proportional to the catalyst area fraction. The effect has its origin in the catalytic decomposition of precursors and is applicable to a variety of nanowire materials and growth techniques.

摘要

对纳米线的兴趣持续增长,因为它们有望将具有新功能的高性能半导体与现有硅技术进行单片集成。大多数纳米线是通过气-液-固生长法生长的,尽管经过多年研究,这种生长机制仍在激烈争论中。特别是,金属颗粒的作用尚不清楚。例如,关于颗粒尺寸对纳米线生长速率的影响,已有相互矛盾的报道。此外,从图案化催化剂阵列生长纳米线的研究表明,较小的线间距会导致材料竞争并降低生长速率。在此,我们报道了一种违反直觉的协同效应,即线间距减小会导致生长速率增加。我们表明,生长速率与催化剂面积分数成正比。这种效应源于前驱体的催化分解,适用于多种纳米线材料和生长技术。

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