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Self-sustaining 3-Dimensional Thin Liquid Films in Ambient Environments

机译:在环境中自我维持的三维液体薄膜

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Thin liquid films (TLF) have fundamental and technological importance ranging from the thermodynamics of cell membranes to the safety of light-water cooled nuclear reactors. The creation of stable water TLFs, however, is very difficult. In this paper, the realization of thin liquid films of water with custom 3D geometries that persist indefinitely in ambient environments is reported. The wetting films are generated using microscale “mounts” fed by microfluidic channels with small feature sizes and large aspect ratios. These devices are fabricated with a custom 3D printer and resin, which were developed to print high resolution microfluidic geometries as detailed in Reference 26. By modifying the 3D-printed polymer to be hydrophilic and taking advantage of well-known wetting principles and capillary effects, self-sustaining microscale “water fountains” are constructed that continuously replenish water lost to evaporation while relying on surface tension to stabilize their shape. To the authors' knowledge, this is the first demonstration of stable sub-micron thin liquid films (TLFs) of pure water on curved 3D geometries.
机译:薄液膜(TLF)具有从细胞膜的热力学到轻水冷核反应堆的热力学的基本和技术重要性。然而,稳定的水TLF的创造非常困难。在本文中,报道了具有在环境环境中无限期的定制3D几何形状的水的薄液膜的实现。使用具有小特征尺寸和大纵横比的微流体通道喂养的微尺寸“安装件”产生润湿膜。这些装置是用自定义3D打印机和树脂制造的,该树脂是开发的,以印刷高分辨率的微流体几何形状,如在参考26中详述。通过改变3D印刷的聚合物,可以亲水和利用众所周知的润湿原理和毛细管效应,自维持微尺寸“水喷泉”构建,连续补充损失以蒸发的水,同时依靠表面张力以稳定其形状。对于作者的知识,这是曲线3D几何形状上纯净水的稳定亚微米薄液膜(TLF)的第一次演示。

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