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首页> 外文期刊>ACS nano >Tunable conductive nanoparticle wire arrays fabricated by convective self-assembly on nonpatterned substrates
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Tunable conductive nanoparticle wire arrays fabricated by convective self-assembly on nonpatterned substrates

机译:通过对流自组装在非图案化基底上制备的可调谐导电纳米粒子线阵列

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摘要

Ordered arrays of centimeter-long nanoparticle wires are fabricated by convective self-assembly from aqueous suspensions of 18 nm gold colloids, on flat SiO2/Si substrates without any prepatterning. The orientation of the wires can be switched from parallel to perpendicular to the substrate-liquid-air contact line by controlling the substrate temperature. While the wires parallel to the meniscus are obtained by a stick-slip process, a mechanism based on critical density-triggered particle pinning is proposed to explain the formation of wires perpendicular to the meniscus. The geometry of the wire arrays is tuned by simply controlling the meniscus translation speed. Wires are typically characterized by widths of a few micrometers (1.8-8.2 μm), thicknesses of mono-to multilayers (18-70 nm), and spacings of few tens of micrometers. The fabricated nanoparticle wires are conductive, exhibiting a metallic resistive behavior in ambient conditions. Resistivity values of 5 × 10-6 and 5 × 10-2 Ωm are obtained on multilayer and monolayer nanoparticle wires, respectively. Such conductive nanoparticle wire arrays, fabricated by a simple and low-cost bottom-up strategy, offer opportunities for developing nanoparticle-based functional devices.
机译:通过对流自组装,在平坦的SiO2 / Si衬底上,通过对流自组装,从18 nm金胶体的水悬浮液中,无需进行任何预先构图就可以制造出厘米长的纳米线的有序阵列。通过控制基板温度,可以将导线的方向从平行于垂直于基板-液体-空气接触线的方向切换为垂直。当通过粘滑工艺获得与弯液面平行的导线时,提出了一种基于临界密度触发粒子钉扎的机制来解释与弯液面垂直的导线的形成。线阵列的几何形状可通过简单地控制弯月面平移速度来调整。导线的典型特征是宽度为几微米(1.8-8.2μm),单层到多层的厚度(18-70 nm)和几十微米的间距。所制造的纳米粒子线是导电的,在环境条件下表现出金属电阻行为。在多层和单层纳米粒子导线上分别获得5×10-6和5×10-2Ωm的电阻率值。通过简单且低成本的自下而上的策略制造的这种导电纳米粒子线阵列为开发基于纳米粒子的功能器件提供了机会。

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