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Effects of solid-liquid interface on the interfacial tension measured by micropipet technique

机译:固液界面对微量移液法测量界面张力的影响

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摘要

Measurement of interfacial tension (IFT) using the micropipet technique involves the solid-liquid interface.At equilibrium,oil-water interfacial tension is determined from the interface curvature and the critical pressure,according to the Young-Laplace equation.This paper aims to examine the possible contribution of the solid-liquid interface on IFT measurement.Three different experimental configurations are used to examine the sought effect.The three configurations are straight,concentric,and tapered pipets with diameters ranging from 2.5 to 30 mum.For all three configurations,the critical pressure is found to depend only on the pipet diameter.However,when the Young-Laplace equation is applied to determine the IFT,a significant error was noticed at small pipet diameters.The IFT error was described by an exponential function whose asymptote approached the independently determined IFT value with a sufficiently large pipet diameter.The IFT error is anticipated to arise from the layerlike effect of an "ultrastructured" liquid near the solid surface.The solid-induced error in oil-water IFT is noted to fade away at lowered IFT by the addition of surfactant.
机译:使用微吸管技术测量界面张力(IFT)涉及固液界面。在平衡状态下,根据Young-Laplace方程,根据界面曲率和临界压力确定油水界面张力。固液界面对IFT测量的可能贡献。使用三种不同的实验配置来检验所寻求的效果。三种配置是直的,同心的和锥形的移液器,直径范围从2.5到30um。对于所有三种配置,发现临界压力仅取决于吸管直径。但是,当应用Young-Laplace方程确定IFT时,在小吸管直径上会发现明显的误差。IFT误差由一个渐近线渐近的指数函数来描述。移液管直径足够大时独立确定的IFT值。固体表面附近的“超结构化”液体的影响。通过添加表面活性剂,油水IFT中的固体诱导误差在降低的IFT处逐渐消失。

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