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Electrostatics at the oil–water interface stability and order in emulsions and colloids

机译:乳化液和胶体中油水界面的静电稳定性和有序性

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摘要

Oil–water mixtures are ubiquitous in nature and are particularly important in biology and industry. Usually additives are used to prevent the liquid droplets from coalescing. Here, we show that stabilization can also be obtained from electrostatics, because of the well known remarkable properties of water. Preferential ion uptake leads to a tunable droplet charge and surprisingly stable, additive-free, water-in-oil emulsions that can crystallize. For particle-stabilized (“Pickering”) emulsions we find that even extremely hydrophobic, nonwetting particles can be strongly bound to (like-charged) oil–water interfaces because of image charge effects. These basic insights are important for emulsion production, encapsulation, and (self-)assembly, as we demonstrate by fabricating a diversity of structures in bulk, on surfaces, and in confined geometries.
机译:油水混合物在自然界无处不在,在生物学和工业中尤其重要。通常,使用添加剂来防止液滴聚结。在这里,我们证明由于众所周知的水的显着特性,也可以从静电中获得稳定作用。优先吸收离子会产生可调节的液滴电荷,并且会结晶出令人惊讶的稳定,无添加剂的油包水型乳液。对于颗粒稳定的(“ Pickering”)乳液,我们发现由于图像电荷效应,即使疏水性极强,不润湿的颗粒也可以牢固地结合在(带电荷的)油水界面上。这些基本见解对于乳液生产,封装和(自)组装非常重要,正如我们通过在本体,表面和有限的几何形状中制造各种结构所证明的那样。

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