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Cooperative Effects in Surfactant Adsorption Layers at Water/Alkane Interfaces

机译:水/烷烃界面在表面活性剂吸附层中的协同作用

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In the present work, the properties of dodecyl dimethyl phosphine oxide (C12DMPO) at the water/decane interface are studied and compared with those obtained earlier at the interface to hexane. To simulate the interfacial behavior, a two-component thermodynamic model is proposed, which combines the equation of state and Frumkin isotherm for decane with the reorientation model involving the intrinsic compressibility for the surfactant. In this approach, the surface activity of decane is governed by its interaction with C12DMPO. The theory predicts the influence of decane on the decrease of the surface tension at a very low surfactant concentration for realistic values of the ratio of the adsorbed amounts of decane and surfactant. The surfactant’s distribution coefficient between the aqueous and decane phases is determined. Two types of adsorption systems were used: a decane drop immersed into the C12DMPO aqueous solution, and a water drop immersed into the C12DMPO solution in decane. To determine the distribution coefficient, a method based on the analysis of the transfer of C12DMPO between water and decane is also employed.
机译:在本作工作中,研究了水/癸烷界面在水/癸烷界面处的十二烷基二甲基氧化膦(C12DMPO)的性质,并与己烷界面前面获得的那些相比。为了模拟界面行为,提出了一种双组分热力学模型,该模型将状态和弗拉米皮等温线的方程与涉及表面活性剂的内在压缩性的重新定位模型相结合。在这种方法中,癸烷的表面活性由其与C12DMPO的互动来控制。该理论预测了癸烷对表面张力下表面张力降低的影响,以实现吸附量的癸烷和表面活性剂的比例的实际值。表面活性剂和rsquo;确定水和癸烷相之间的分布系数。使用两种类型的吸附系统:浸入C12DMPO水溶液中的癸烷下降,并将水滴浸入癸烷中的C12DMPO溶液中。为了确定分布系数,还采用了一种基于水和癸烷之间的C12DMPO转移的分析的方法。

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