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Behaviour of cetyltrimethylammonium bromide, Triton X-100 and Triton X-114 in mixed monolayer at the (water-air) interface

机译:十六烷基三甲基溴化铵,Triton X-100和Triton X-114在(水-空气)界面混合单层中的行为

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摘要

The measured values of the surface tension of aqueous solution of binary and ternary mixtures including CTAB, TX-100 and TX-114 were compared to those calculated from the Joos equation modified by us. It appeared that it is possible to predict, at the first approximation, the changes of the surface tension of aqueous solutions studied as a function of concentration of all possible binary and ternary mixtures in the range from 0 to the minimal value of their surface tension. However, the deviations of the calculated values of surface tension from those measured depend on the synergetic effect in the reduction of water surface tension. This effect was established by the values of the molecular interaction parameter calculated from the Rosen and Hua equations. From these equations the relative mole fraction of three surfactants in the mixed monolayer at the (water-air) interface was also determined and compared to that obtained by using surface excess concentrations of particular surfactants in this monolayer. As follows from this comparison the Rosen and Hua equations give the proper relation between the mole fraction of TX-100, TX-114 and CTAB in the monolayer but on the condition it is determined at the same concentration of each surfactant in the mixture. The synergetic effect of ternary mixture in the reduction of the water surface tension is also reflected in the changes of the values of the Gibbs standard free energy of adsorption which was determined by using the Langmuir and Gu and Zhu equations. It appeared that the Gu and Zhu isotherm of adsorption proposed for the solid-solution interface is also useful for determination of the Gibbs standard free energy of adsorption at the (water-air) one.
机译:将二元和三元混合物(包括CTAB,TX-100和TX-114)的水溶液表面张力的测量值与由我们修改的Joos方程计算得出的值进行了比较。似乎有可能在一开始就预测所研究的水溶液的表面张力的变化,该变化是所有可能的二元和三元混合物的浓度在0到其表面张力最小值之间的函数。但是,表面张力的计算值与测量值的偏差取决于降低水表面张力的协同作用。通过从Rosen和Hua方程计算的分子相互作用参数的值可以确定这种效果。根据这些方程式,还确定了混合单层中(水-空气)界面上三种表面活性剂的相对摩尔分数,并将其与通过使用该单层中特定表面活性剂的表面过量浓度所获得的相对摩尔分数进行了比较。从该比较可以看出,Rosen和Hua方程给出了单层TX-100,TX-114和CTAB的摩尔分数之间的适当关系,但在这种情况下,应在混合物中每种表面活性剂的浓度相同的情况下进行测定。三元混合物在降低水表面张力方面的协同作用还反映在吉布斯标准吸附自由能值的变化上,该变化通过使用Langmuir和Gu and Zhu方程确定。固相界面的固井和固井吸附等温线似乎也可用于确定(水-空气)吸附的吉布斯标准吸附自由能。

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