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Tunable Ultra-high Aspect Ratio Nanorod Architectures grown on Porous Substrate via Electromigration

机译:通过电迁移在多孔基质上生长的可调谐超高长径比纳米棒结构

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摘要

The interplay between porosity and electromigration can be used to manipulate atoms resulting in mass fabrication of nanoscale structures. Electromigration usually results in the accumulation of atoms accompanied by protrusions at the anode and atomic depletion causing voids at the cathode. Here we show that in porous media the pattern of atomic deposition and depletion is altered such that atomic accumulation occurs over the whole surface and not just at the anode. The effect is explained by the interaction between atomic drift due to electric current and local temperature gradients resulting from intense Joule heating at constrictions between grains. Utilizing this effect, a porous silver substrate is used to mass produce free-standing silver nanorods with very high aspect ratios of more than 200 using current densities of the order of 108 A/m2. This simple method results in reproducible formation of shaped nanorods, with independent control over their density and length. Consequently, complex patterns of high quality single crystal nanorods can be formed in-situ with significant advantages over competing methods of nanorod formation for plasmonics, energy storage and sensing applications.
机译:孔隙度和电迁移之间的相互作用可用于操纵原子,从而大规模制造纳米级结构。电迁移通常会导致原子积累,并伴随阳极上的突起和原子耗尽,从而在阴极上产生空隙。在这里,我们表明,在多孔介质中,原子沉积和耗尽的模式发生了变化,从而使原子积累发生在整个表面上,而不仅仅是在阳极上。通过电流引起的原子漂移与晶粒之间的收缩处剧烈的焦耳热产生的局部温度梯度之间的相互作用来解释这种影响。利用这种效应,使用10 8 A / m 2量级的电流密度,使用多孔银基板大量生产纵横比超过200的非常高的自立式银纳米棒。 。这种简单的方法可重现成形的纳米棒,并可以独立控制其密度和长度。因此,可以就地形成高品质单晶纳米棒的复杂图案,这与用于等离子,能量存储和传感应用的纳米棒形成的竞争方法相比具有明显优势。

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