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Nanopore-Enhanced Drop Evaporation: When Cooler or More Saline Water Droplets Evaporate Faster

机译:纳米孔增强的液滴蒸发:当冷却器或更多盐水水滴时更快地蒸发

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摘要

The evaporation of water droplets on surfaces is a ubiquitous phenomenon in nature and has critical importance in a broad range of technical applications. Here, we show a substantial enhancement of liquid evaporation rate when droplets are on nanoporous thin film surfaces. We also reveal how this nanopore-enhanced evaporation leads to counterintuitive phenomena: cooler or more saline water droplets evaporate faster. We find indeed that, contrary to typical evaporation behavior of sessile droplets on nonporous surfaces, the droplets placed on nanoporous thin films evaporate more rapidly when salt concentration increases or when the temperature decreases. This peculiar droplet evaporation behavior is related to the key role of the steady wetted annulus that is self-generated into the nanopore network in the drop periphery, which leads to an effectively enhanced evaporation area that controls the overall evaporation process. Our results provide the prospect of conceiving fresh scenarios in the evaporation of drops on surfaces in both relevant applications and fundamental insights.
机译:表面上的水滴蒸发是一种无处不在的现象,在广泛的技术应用中具有至关重要的重要性。这里,当液滴在纳米多孔薄膜表面上时,我们表现出液体蒸发速率的显着提高。我们还揭示了这种纳米孔增强的蒸发如何导致逆行的现象:冷却器或更多盐水液滴更快地蒸发。我们发现,与无孔表面上的典型蒸发行为相反,当盐浓度增加或当温度降低时,放置在纳米多孔薄膜上的液滴更快地蒸发。这种特殊的液滴蒸发行为与稳定湿润的环的关键作用有关,该稳定的环在下降周边中的纳米孔网络中的纳米孔网络,这导致有效增强控制整体蒸发过程的蒸发区域。我们的结果提供了在相关应用和基本洞察中蒸发表面蒸发中的新鲜场景的前景。

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