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First-Principles Prediction of Liquid/Liquid Interfacial Tension

机译:液/液界面张力的第一性原理预测

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摘要

The interfacial tension between two liquids is the free energy per unit surface area required to create that interface. Interfacial tension is a determining factor for two-phase liquid behavior in a wide variety of systems ranging from water flooding in oil recovery processes and remediation of groundwater aquifers contaminated by chlorinated solvents to drug delivery and a host of industrial processes. Here, we present a model for predicting interfacial tension from first principles using density-functional theory calculations. Our model requires no experimental input and is applicable to liquid/liquid systems of arbitrary compositions. The consistency of the predictions with experimental data is significant for binary, ternary, and multi-component water/organic compound systems, which offers confidence in using the model to predict behavior where no data exists. The method is fast and can be used as a screening technique as well as to extend experimental data into conditions where measurements are technically too difficult, time consuming, or impossible.
机译:两种液体之间的界面张力是产生该界面所需的每单位表面积的自由能。界面张力是两相液体行为在许多系统中的决定性因素,这些系统包括采油过程中的水驱,补救被氯化溶剂污染的地下水含水层,药物输送和许多工业过程。在这里,我们提出了一种使用密度泛函理论计算从第一原理预测界面张力的模型。我们的模型不需要实验输入,适用于任意成分的液体/液体系统。对于二元,三元和多组分水/有机化合物系统,预测与实验数据的一致性非常重要,这为使用模型预测不存在数据的行为提供了信心。该方法速度快,可以用作筛选技术,也可以将实验数据扩展到技术上过于困难,耗时或不可能进行测量的条件下。

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