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Internal flows and particle transport inside picoliter droplets of binary solvent mixtures.

机译:二元溶剂混合物的微微升液滴内部的内部流动和颗粒传输。

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摘要

The flows in evaporating droplets of binary mixtures are much more complicated than single solvent systems. Solutal Marangoni flows are generated due to differential evaporation of components. High-speed imaging techniques are used to visualize how internal flows transport particles to build up the end deposit. Circulatory flow along streamlines develops inside droplets at the contact line or central region, depending on the direction of the Marangoni flow. Re-circulation of particles can reduce the build up of a ring stain. Additionally, particles migrate across streamlines to collect at the droplet center independent of where the circulating regions occur. Potential mechanisms for particle migration are discussed, including chemophoresis, thermophoresis and shear-induced migration.
机译:二元混合物的蒸发液滴中的流动比单溶剂系统复杂得多。由于组分的差异蒸发而产生纯净的Marangoni流。高速成像技术用于可视化内部流如何传输颗粒以堆积最终沉积物。沿着流线的循环流根据Marangoni流的方向在接触线或中心区域内的液滴内部发展。颗粒的再循环可以减少环斑的形成。另外,颗粒跨流线迁移以聚集在液滴中心,而与循环区域的位置无关。讨论了粒子迁移的潜在机制,包括化学电泳,热泳和剪切诱导的迁移。

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