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Ion partitioning at the oil-water interface as a source of tunable electrostatic effects in emulsions with colloids

机译:在油-水界面处的离子分配是胶体乳液中可调节的静电效应的来源

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摘要

We present a combined experimental and theoretical investigation of the surprisingly strong electrostatic effects that can occur in mixtures of low- and high-polar liquids (e.g. oil-water emulsions), here in the presence of colloidal particles. For our experiments, we used confocal microscopy imaging, supplemented with electrophoresis and conductivity measurements. Theoretically, we studied our systems by means of a modified Poisson-Boltzmann theory, which takes into account image charge effects and the electrostatic self-energies of the micro-ions in the different dielectric media. Our results show that the unequal partitioning of micro-ions between the two liquid phases is the common driving force behind most of the observed electrostatic effects. The structural signatures of these effects typically develop on a time scale of hours to days and are qualitatively well-described by our theory. We demonstrate how the partitioning process and its associated phenomena can be controlled by shifting the balance of the interlocked ionic dissociation and partitioning equilibria. Moreover, we present strong experimental proof that the two-dimensional colloidal crystals at the oil-water interface are due to long-ranged Coulombic repulsion through the oil phase. The acquired insight in the role of electrostatics in oil-water emulsions is important for understanding the interactions in particle-stabilized ('Pickering') and charge-stabilized emulsions, emulsion production, encapsulation and self-assembly.
机译:我们结合实验和理论研究了在胶体颗粒存在下低极性和高极性液体(例如油水乳液)的混合物中可能发生的令人惊讶的强静电效应。对于我们的实验,我们使用了共聚焦显微镜成像,并辅以电泳和电导率测量。从理论上讲,我们通过改进的Poisson-Boltzmann理论研究了我们的系统,该理论考虑了图像电荷效应和不同介电介质中微离子的静电自能。我们的结果表明,两种液相之间的微离子分配不均是大多数观察到的静电效应背后的共同驱动力。这些效应的结构特征通常在数小时至数天的时间范围内发展,并且在我们的理论上得到了很好的描述。我们展示了如何通过改变互锁的离子解离和分配平衡的平衡来控制分配过程及其相关现象。此外,我们提供了强有力的实验证明,油-水界面处的二维胶体晶体是由于油相中的长距离库仑排斥。对静电在油水乳液中的作用的深入了解对于理解颗粒稳定(“ Pickering”)和电荷稳定乳液,乳剂生产,封装和自组装中的相互作用非常重要。

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