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Dynamically controlled deposition of colloidal nanoparticle suspension in evaporating drops using laser radiation

机译:使用激光辐射动态控制胶体纳米颗粒悬浮液在蒸发液滴中的沉积

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摘要

Dynamic control of the distribution of polystyrene suspended nanoparticles in evaporating droplets is investigated using a 2.9 μm high power laser. Under laser radiation a droplet is locally heated and fluid flows are induced that overcome the capillary flow, and thus a reversal of the coffee-stain effect is observed. Suspension particles are accumulated in a localised area, one order of magnitude smaller than the original droplet size. By scanning the laser beam over the droplet, particles can be deposited in an arbitrary pattern. This finding raises the possibility for direct laser writing of suspended particles through a liquid layer. Furthermore, a highly uniform coating is possible by manipulating the laser beam diameter and exposure time. The effect is expected to be universally applicable to aqueous solutions independent of solutes (either particles or molecules) and deposited substrates.udud
机译:使用2.9μm高功率激光研究了动态控制聚苯乙烯悬浮的纳米颗粒在蒸发液滴中的分布。在激光辐射下,液滴被局部加热,并产生克服毛细流的流体流,因此观察到咖啡色效应的逆转。悬浮颗粒聚集在局部区域,该区域比原始液滴尺寸小一个数量级。通过在液滴上扫描激光束,可以以任意图案沉积颗粒。这一发现增加了通过液体层直接激光写入悬浮颗粒的可能性。此外,通过控制激光束直径和曝光时间,可以实现高度均匀的涂层。预期该效果将普遍适用于不依赖于溶质(颗粒或分子)和沉积的底物的水溶液。

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