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Surfactant and electric field strength effects on surface tension at liquid/liquid/solid interfaces

机译:表面活性剂和电场强度对液/液/固界面的表面张力的影响

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We performed a series of experiments designed to elucidate the effects of the presence of sodium dodecyl sulfate (SDS) surfactant and an applied electrical field on the wetting behavior in a system containing a sessile droplet of phenylmethyl polysiloxane (PMPS) oil on a polished stainless steel surface submersed in aqueous solution. The voltage difference ranged from -3 to +3 V, which is at least 3 orders of magnitude smaller than from comparable recent work. We report the measured equilibrium contact angle of the droplet as a function of surfactant concentration and field strength. We then modeled the system. We solved the Laplace equation to obtain the 3D field within our system. We expanded the three surface tensions ( oil droplet-aqueous solution (oa), oil droplet-metal surface ( os), and aqueous solution-metal surface (as)) in a Taylor series with respect to surfactant concentration and local field strength. We use these three surface tensions in Young's equation to obtain the theoretical contact angle of the organic droplet. We demonstrate that the large changes in contact angle due to the simultaneous presence of small concentrations of surfactant and small voltage differences can be accounted for by changes in the oa and as surface tensions.
机译:我们进行了一系列实验,旨在阐明十二烷基硫酸钠(SDS)表面​​活性剂的存在和施加的电场对在抛光不锈钢上含苯甲基聚硅氧烷(PMPS)的无滴液滴的系统中润湿行为的影响。表面浸入水溶液中。电压差范围为-3至+3 V,比最近的可比工作至少小3个数量级。我们报告测得的液滴的平衡接触角与表面活性剂浓度和场强的关系。然后,我们对系统进行了建模。我们求解了拉普拉斯方程,以获得系统中的3D场。关于表面活性剂浓度和局部场强,我们以泰勒级数扩展了三个表面张力(油滴-水溶液(oa),油滴-金属表面(os)和水溶液-金属表面(as))。我们在Young方程中使用这三个表面张力来获得有机液滴的理论接触角。我们证明,由于同时存在少量浓度的表面活性剂和较小的电压差而导致的接触角的大变化可以通过oa的变化和表面张力来解释。

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