首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Low Interfacial Free Volume of Stubby Surfactants Stabilizes Water-in-Carbon Dioxide Microemulsions
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Low Interfacial Free Volume of Stubby Surfactants Stabilizes Water-in-Carbon Dioxide Microemulsions

机译:界面活性剂的界面自由体积低,可稳定二氧化碳中的水微乳液

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摘要

A novel paradigm for the design of surfactants for water/CO_2 (W/C) microemulsions is presented.The paradigm focuses on the fractional free volume (FFV) available to CO_2 at the interface.The FFV is an unambiguous geometric parameter that is calculated directly from surfactant tail geometry and surface coverage.We present an analysis of recent experimental studies indicating that low FFV is a necessary,although not sufficient,condition for W/C microemulsion formation and that both microemulsion and macroemulsion stability correlate qualitatively with FFV.This correlation is understood by noting that a decrease in FFV tends to favor the factors that stabilize W/C microemulsions,namely,decreased interfacial tension,reduced overlap between tails (weakening attractive interdroplet interactions),and increased interfacial curvature.These factors are more challenging to achieve in CO_2 than in alkane solvents,implying that low FFV is especially important for W/C microemulsions.
机译:提出了一种用于水/ CO_2(W / C)微乳液表面活性剂设计的新范式,该范式主要关注界面处CO_2可用的分数自由体积(FFV).FFV是直接计算的明确几何参数从表面活性剂尾部的几何形状和表面覆盖率的角度出发。我们对最近的实验研究进行分析,表明低FFV是W / C微乳液形成的必要条件,尽管还不够,而且微乳液和大乳液的稳定性都与FFV定性相关。注意到FFV的降低倾向于有利于稳定W / C微乳液的因素,即界面张力降低,尾巴之间的重叠减少(减弱有吸引力的液滴间相互作用)和界面曲率增加。与烷烃溶剂相比,CO_2的含量低,这表明低FFV对W / C微乳液尤为重要。

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