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Measuring Surface and Interfacial Tension In Situ in Microdripping Mode for Electrohydrodynamic Applications

机译:电流动力学应用微量探测模式的测量表面和界面张力

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摘要

Walking on water is made possible, at least for tiny insects, by molecular interaction at the interfaces of dissimilar materials. Impact of these interactions—surface tension (SFT) and, more broadly, interfacial tension (IFT)—is particularly evident at micro and nano sizescales. Thus, implications of walking on water can be significant for SFT or IFT (S/IFT)-driven nanofabrication technologies, such as electrohydrodynamic atomization (EHDA), in developing next generation biomimetic microphysiological systems (MPS) and drug delivery systems (DDS). However, current methods for estimating S/IFT, based on sessile drops or new surface formation on a ring or plate, are unsuitable for integration with EHDA assemblies used in electrospinning and electrospraying. Here, we show an method for estimating S/IFT specifically devised for EHDA applications using signal processing algorithms that correlate the frequency and periodicity of liquid dispensed in EHDA microdripping mode with numerical solutions from computational fluid dynamics (CFD). Estimated S/IFT was generally in agreement with published ranges for water–air, 70% ethanol–air, chloroform–air, and chloroform–water. SFT for solutions with surfactants decreased with increasing concentrations of surfactant, but at relatively higher than published values. This was anticipated, considering that established methods measure SFT at boundaries with asymmetrically high concentrations of surfactants which lower SFT.
机译:通过在不同材料的界面处的分子相互作用,至少用于微小的昆虫,可以在水上行走。这些相互作用 - 表面张力(SFT)的影响,更广泛地,界面张力(IFT) - 在微型和纳米升级上特别明显。因此,在开发下一代仿生微型微生物生理系统(MPS)和药物递送系统(DDS)中,步行在水面上行走的纳米制造技术(例如电液动力学雾化(EHDA)都是很重要的。然而,基于在环形或板上的柄液滴或新表面形成的用于估计S / IFT的当前方法是不适合与静电纺丝和电喷雾器中使用的EHDA组件的集成。这里,我们示出了一种使用信号处理算法具体设计用于EHDA应用的S / IFT的方法,该信号处理算法将分配在EHDA微掺杂模式中分配的液体的频率和周期性,从计算流体动力学(CFD)中的数值解。估计的S / IFT通常与公开的水 - 空气,70%乙醇 - 空气,氯仿 - 空气和氯仿水的范围一致。具有表面活性剂的溶液的SFT随着表面活性剂浓度的增加而降低,但在比公开值相对较高。考虑到这一点,考虑到已建立的方法测量界限的SFT,具有低于SFT的不对称高浓度的表面活性剂。

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