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The standard free energy of surfactant adsorption at air/water and oil/water interfaces: Theoretical vs. empirical approaches

机译:表面活性剂在空气/水和油/水界面上吸附的标准自由能:理论方法与经验方法

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The standard free energy of surfactant adsorption represents the work of transfer of a surfactant molecule from the bulk of solution to an infinitely diluted adsorption layer. This quantity can be determined by non-linear fits of surface-tension isotherms with the help of a theoretical model of adsorption. Here, the models of Frumkin, van der Waals and Helfand-Frisch-Lebowitz are applied, and the results are compared. Irrespective of the differences between these models, they give close values for the standard free energy. The results from the theoretical approach are compared with those from the most popular empirical approach. The latter gives values of the standard free energy, which are considerably different from the respective true values, with c.a. 10 kJ/mol for nonionic surfactants, and with c.a. 20 kJ/mol for ionic surfactants. These dif-ferences are due to contributions from interactions between the molecules in dense adsorption layers. It is concluded that the true values of the standard free energy can be determined with the help of an appropriate theoretical model. For the processed sets of data, the van der Waals model gives the best results, especially for the determination of the standard adsorption enthalpy and entropy from the temperature dependence of sur-face tension. The results can be useful for the development of a unified approach to the thermodynamic char-acterization of surfactants.
机译:表面活性剂吸附的标准自由能表示表面活性剂分子从溶液主体到无限稀释的吸附层的转移功。借助于吸附理论模型,可以通过表面张力等温线的非线性拟合来确定该量。在此,应用了Frumkin,van der Waals和Helfand-Frisch-Lebowitz的模型,并对结果进行了比较。不管这些模型之间的差异如何,它们都为标准自由能提供了接近的值。将理论方法的结果与最流行的经验方法的结果进行比较。后者给出的标准自由能的值与相应的真实值有很大的不同,约为c.a。非离子表面活性剂为10 kJ / mol,c.a.离子表面活性剂为20 kJ / mol。这些差异是由于致密吸附层中分子之间的相互作用所引起的。结论是可以借助适当的理论模型确定标准自由能的真实值。对于处理后的数据集,范德华斯模型给出了最佳结果,尤其是根据表面张力的温度依赖性确定标准吸附焓和熵。该结果可用于开发表面活性剂热力学表征的统一方法。

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