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首页> 外文期刊>Nano letters >Wrinkling Instability and Adhesion of a Highly Bendable Gallium Oxide Nanofilm Encapsulating a Liquid-Gallium Droplet
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Wrinkling Instability and Adhesion of a Highly Bendable Gallium Oxide Nanofilm Encapsulating a Liquid-Gallium Droplet

机译:高度达到的氧化镓纳米膜包装液体镓液滴的皱折不稳定性和粘附性

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摘要

The wrinkling and interfacial adhesion mechanics of a gallium-oxide nanofilm encapsulating a liquid-gallium droplet are presented. The native oxide nanofilm provides mechanical stability by preventing the flow of the liquid metal. We show how a crumpled oxide skin a few nanometers thick behaves akin to a highly bendable elastic nanofilm under ambient conditions. Upon compression, a wrinkling instability emerges at the contact interface to relieve the applied stress. As the load is further increased, radial wrinkles evolve, and, eventually, the oxide nanofilm ruptures. The observed wrinkling closely resembles the instability experienced by nanofilms under axisymmetric loading, thus providing further insights into the behaviors of elastic nanofilms. Moreover, the mechanical attributes of the oxide skin enable high surface conformation by exhibiting liquid-like behavior. We measured an adhesion energy of 0.238 ± 0.008 J m~(–2) between a liquid-gallium droplet and smooth flat glass, which is close to the measurements of thin-sheet nanomaterials such as graphene on silicon dioxide.
机译:提出了一种氧化镓纳米丝的皱纹和界面粘附力,包封液体镓液滴。天然氧化物纳米丝通过防止液态金属的流动提供机械稳定性。我们展示了皱折的氧化物皮肤在环境条件下,几纳米厚的表现在高度可弯曲的弹性纳米膜上。在压缩时,在接触界面处出现起皱稳定性以减轻施加的应力。随着载荷进一步增加,径向皱纹进化,并且最终氧化纳米膜破裂。观察到的褶皱非常类似于轴对称负荷下纳米丝经历的不稳定性,从而提供进一步的洞察力纳米叶片的行为。此外,通过表现出液体样行为,氧化物皮肤的机械属性使得高表面构象。在液 - 镓液滴和平滑的扁平玻璃之间测量粘合能量为0.238±0.008J m〜(-2)的粘合能靠近薄片纳米材料的测量如石墨烯在二氧化硅上。

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