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Drops Floating on Granular Rafts: A Tool for LiquidTransport and Delivery

机译:浮在颗粒筏上的水滴:液体的工具运输与交付

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摘要

Solid particles can modify the properties of liquid interfaces and are therefore widely used to coat drops, bubbles, and stabilize emulsions and foams. Here, we propose a new, easy, and affordable method to produce millimetric to centimetric water-in-water capsules using solid particles. We prevent the coalescence of a water drop at an oil–water interface using a monolayer of large, dense, and hydrophobic particles: a “granular raft”. The capsule is then formed by a mechanical instability occurring when the interface collapses under the combined load of the floating drop and particle weight. During the destabilization, the water drop sinks into the water subphase through an oil-particle film which covers it to produce the armored capsule. By modeling the raft as a heavy membrane, we predict the floating drop shape, the raft deformation, its destabilization and highlight the complex dual nature (solid- and liquid-like) of the capsule shell. Because armored capsules’ content is isolated, transportable, and easily releasable, they are great candidates forapplications requiring transport of water-soluble compounds in aqueoussystems such as green chemistry or cell biology.
机译:固体颗粒可以改变液体界面的特性,因此被广泛用于涂覆液滴,气泡并稳定乳液和泡沫。在这里,我们提出了一种新的,简便且经济的方法,可以使用固体颗粒生产毫米到厘米的水包水胶囊。我们使用大的,密集的和疏水性的单层颗粒:“颗粒筏”来防止油-水界面处的水滴聚结。然后,当界面在浮滴和颗粒重量的组合载荷作用下塌陷时,会由于机械不稳定性而形成胶囊。在不稳定过程中,水滴通过覆盖在其上的油颗粒膜沉入水子相中,从而产生装甲舱。通过将筏建模为重膜,我们可以预测浮滴的形状,筏的变形,失稳并突出胶囊壳的复杂双重性质(固体和液体状)。由于装甲胶囊的内容是隔离的,可运输的且易于释放的,因此非常适合用于需要在水中运输水溶性化合物的应用系统,例如绿色化学或细胞生物学。

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