首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Activity Coefficients and Free Energies of Nonionic Mixed Surfactant Solutions from Vapor-Pressure and Freezing-Point Osmometry
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Activity Coefficients and Free Energies of Nonionic Mixed Surfactant Solutions from Vapor-Pressure and Freezing-Point Osmometry

机译:蒸汽压和冰点渗透压法测定非离子混合表面活性剂溶液的活度系数和自由能

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The thermodynamic properties of mixed surfactant solutions are widely investigated, prompted by numerous practical applications of these systems and by interest in molecular association and self-organization. General techniques for measuring thermodynamic activities, such as isopiestic equilibration, are well-established for multicomponent solutions. Surprisingly, these techniques have not yet been applied to mixed surfactant solutions, despite the importance of the free energy for micelle stability. In this study, equations are developed for the osmotic coefficients of solutions of nonionic surfactant A + nonionic surfactant B. A mass-action model is used, with virial equations for the activity coefficients of the micelles and free surfactant monomer species. The equations are fitted to osmotic coefficients of aqueous decylsulfobetaine + dodecylsulfobetaine solutions measured by vapor-pressure and freezing-point osmometry. Equilibrium constants for mixed-micelle formation are calculated from the free monomer concentrations at the critical micelle concentrations. The derived activity coefficients of the micelles and free monomers indicate large departures from ideal solution behavior, even for dilute solutions of the surfactants. Stoichiometric activity coefficients of the total surfactant components are evaluated by Gibbs—Duhem integration of the osmotic coefficients. Relatively simple colligative property measurements hold considerable promise for free energy studies of multi-component surfactant solutions.
机译:混合表面活性剂溶液的热力学性质已得到广泛研究,这是由于这些系统的大量实际应用以及对分子缔合和自组织的关注。用于多组分溶液的测量热力学活性的通用技术(如同功平衡)已被广泛使用。出乎意料的是,尽管自由能对于胶束稳定性很重要,但这些技术尚未应用于混合的表面活性剂溶液。在这项研究中,针对非离子型表面活性剂A +非离子型表面活性剂B的溶液的渗透系数建立了方程。使用了质量作用模型,并对胶束和游离表面活性剂单体物种的活性系数进行了病毒式方程式计算。该方程适合于癸基磺基甜菜碱水溶液+十二烷基磺基甜菜碱水溶液的渗透系数,该渗透系数通过蒸气压和冰点渗透压法测量。混合胶束形成的平衡常数由临界胶束浓度下的游离单体浓度计算得出。胶束和游离单体的活性系数表明,即使对于表面活性剂的稀溶液,也与理想的溶液行为大相径庭。通过Gibbs-Duhem渗透系数的积分来评估总表面活性剂组分的化学计量活度系数。相对简单的依数性质测量对于多组分表面活性剂溶液的自由能研究具有可观的前景。

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