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通过原子分子模拟确定表面活性剂的界面张力和临界胶束浓度。

Determining interfacial tension and critical micelle concentrations of surfactants from atomistic molecular simulations.

作者信息

Cárdenas Harry, Kamrul-Bahrin M Ariif H, Seddon Dale, Othman Jofry, Cabral João T, Mejía Andrés, Shahruddin Sara, Matar Omar K, Müller Erich A

机构信息

Department of Chemical Engineering, Imperial College London, South Kensington Campus, SW7 2AZ, United Kingdom.

Specialty Chemical Technology, PETRONAS Research Sdn Bhd, Malaysia.

出版信息

J Colloid Interface Sci. 2024 Nov 15;674:1071-1082. doi: 10.1016/j.jcis.2024.07.002. Epub 2024 Jul 8.

Abstract

Hypothesis Atomistically-detailed models of surfactants provide quantitative information on the molecular interactions and spatial distributions at fluid interfaces. Hence, it should be possible to extract from this information, macroscopical thermophysical properties such as interfacial tension, critical micelle concentrations and the relationship between these properties and the bulk fluid surfactant concentrations. Simulations and Experiments Molecular-scale interfacial of systems containing n-dodecyl β-glucoside (APG) are simulated using classical molecular dynamics. The bulk phases and the corresponding interfacial regions are all explicitly detailed using an all-atom force field (PCFF+). During the simulation, the behaviour of the interface is analyzed geometrically to obtain an approximated value of the critical micelle concentration (CMC) in terms of the surfactant area number density and the interfacial tension is assessed through the analysis of the forces amongst molecules. New experimental determinations are reported for the surface tension of APG at the water/air and at the water/n-decane interfaces. Findings We showcase the application of a thermodynamic framework that inter-relates interfacial tensions, surface densities, CMCs and bulk surfactant concentrations, which allows the in silico quantitative prediction of interfacial tension isotherms.

摘要

假设 表面活性剂的原子级详细模型提供了关于流体界面处分子相互作用和空间分布的定量信息。因此,应该能够从这些信息中提取宏观热物理性质,如界面张力、临界胶束浓度以及这些性质与本体流体表面活性剂浓度之间的关系。

模拟与实验 使用经典分子动力学模拟了含有正十二烷基β-葡萄糖苷(APG)的系统的分子尺度界面。使用全原子力场(PCFF+)对本体相和相应的界面区域进行了明确的详细描述。在模拟过程中,通过几何分析界面行为,根据表面活性剂面积数密度获得临界胶束浓度(CMC)的近似值,并通过分析分子间力来评估界面张力。报告了关于APG在水/空气和水/正癸烷界面处表面张力的新实验测定结果。

研究结果 我们展示了一个热力学框架的应用,该框架将界面张力、表面密度、CMC和本体表面活性剂浓度相互关联,从而能够在计算机上对界面张力等温线进行定量预测。

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