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首页> 外文期刊>Nano letters >Hierarchical Nanotexturing Enables Acoustofluidics on Slippery yet Sticky, Flexible Surfaces
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Hierarchical Nanotexturing Enables Acoustofluidics on Slippery yet Sticky, Flexible Surfaces

机译:等级纳米纹理使声毒流体能够在滑滑且粘稠的柔性表面上实现

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摘要

The ability to actuate liquids remains a fundamental challenge in smart microsystems, such as those for soft robotics, where devices often need to conform to either natural or three-dimensional solid shapes, in various orientations. Here, we propose a hierarchical nanotexturing of piezoelectric films as active microfluidic actuators, exploiting a unique combination of both topographical and chemical properties on flexible surfaces, while also introducing design concepts of shear hydrophobicity and tensile hydrophilicity. In doing so, we create nanostructured surfaces that are, at the same time, both slippery (low in-plane pinning) and sticky (high normal-to-plane liquid adhesion). By enabling fluid transportation on such arbitrarily shaped surfaces, we demonstrate efficient fluid motions on inclined, vertical, inverted, or even flexible geometries in three dimensions. Such surfaces can also be deformed and then reformed into their original shapes, thereby paving the way for advanced microfluidic applications.
机译:履行液体的能力仍然是智能微系统中的根本挑战,例如软机器人的挑战,其中设备通常需要符合天然或三维固体形状,以各种取向。在此,我们提出了一种压电膜的层级纳米缩写作为活性微流体致动器,利用柔性表面上的地形和化学性质的独特组合,同时还引入了剪切疏水性和拉伸亲水性的设计概念。在这样做时,我们产生纳米结构表面,同时滑动(低于平面钉扎)和粘性(高正常到平面液体粘合)。通过在这种任意形状表面上能够进行流体的运输,我们在三维中展示了倾斜,垂直,倒置,甚至柔性几何形状上的有效流体动作。这种表面也可以变形,然后将其重新改造成其原始形状,从而为先进的微流体应用铺平道路。

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