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Drying-mediated assembly of colloidal nanoparticles into large-scale microchannels

机译:干燥介导的胶体纳米颗粒组装成大规模微通道

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摘要

Large-scale highly ordered microchannels were spontaneously and rapidly created by simply drying the colloidal nanoparticle suspension on a rigid substrate. Interestingly, free evaporation of colloidal suspension yielded radially aligned microchannels, while constrained evaporation that was rendered by the use of confined geometries composed of either two nearly parallel plates or a slide placed perpendicular to a rigid substrate imparted the formation of periodic arrays of parallel microchannels in a controllable manner. The microchannels were formed as a result of the competition between stress relaxation due to crack opening that ruptured the film and stress increase due to the loss of solvent. Quite intriguingly, these patterned microchannels can be exploited as templates to craft well-ordered metallic stripes. This facile and scalable approach may offer a new paradigm of producing microscopic patterns over large areas with unprecedented regularity at low cost that can serve as scaffolds for use in microelectronics and microfluidic-based biochips, among other areas.
机译:通过简单地干燥刚性基质上的胶体纳米颗粒悬浮液,可以自发快速创建大规模的高度有序的微通道。有趣的是,胶体悬浮液的自由蒸发产生了沿径向排列的微通道,而通过使用由两个近乎平行的板或垂直于刚性基材放置的载玻片组成的有限几何形状所产生的约束蒸发,则形成了平行微通道的周期性阵列。可控的方式。微通道的形成是由于破裂导致薄膜破裂的应力松弛和由于溶剂损失造成的应力增加之间竞争的结果。有趣的是,这些图案化的微通道可以用作模板来制作有序的金属条纹。这种简便且可扩展的方法可能会提供一种新的范式,以前所未有的规律性以低成本在大面积上产生微观图案,可以用作微电子和基于微流体的生物芯片以及其他领域的支架。

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