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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Thermodynamic study of mixed hydrocarbon/fluorocarbon surfactant system by conductometric and fluorimetric techniques
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Thermodynamic study of mixed hydrocarbon/fluorocarbon surfactant system by conductometric and fluorimetric techniques

机译:电导和荧光技术研究碳氢化合物/碳氟化合物表面活性剂混合体系的热力学

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Micelle formation of a combination of hydrocarbon/fluorocarbon anionic surfactants-sodium n-tetradecyl sulfate (STDS) and sodium perfluorononate (SPFN) in water-was studied, paying special attention to the interaction between the two surfactants and the aggregation number, N, as a function of composition in the mixture (X-STDS). The critical micellization concentration (cmc) at each composition was determined at discrete temperatures by plotting the derivative specific conductance (partial derivativekappa/partial derivativeC) against the root of molarity (rootC) at 40 degreesC. This plot enabled us to determine the cmc even in solutions with addd salt (NaCl) and thus estimate the degree of counterion binding onto micelles (beta) for both single systems from the Corrin-Harkins relation. The micellar composition of STDS (Y-STDS) and interaction parameter were estimated on the basis of Rubingh's and our own theoretical equations, and the results obtained from the respective equations were compared. Although Rubingh's and our own equations resulted in differing phase diagrams, both suggested that the interaction mode between two surfactants and the state of formed micelles are remarkably different depending on the net mole fraction in the surfactant mixture (X-STDS) or Y-STDS. According to our equations taking into account the counterion effect on mixed micelle formation, that is, the degree of counterion binding, we found the existence of an azeotropic point and a region of mole fraction showing that almost completely demixing micelles are formed (0 < X-STDS < 0.2). Further, the aggregation number was measured by static fluorimetry using two pairs of probe P and quencher Q, and in addition, the microscopic environment inside micelles was investigated by the use of a pyrene probe. These fluorescence studies also revealed that the miscibility of the two surfactants and the properties of micelles are distinctive at X-STDS congruent to 0.2; above this mole fraction the two surfactants can form well-mixed micelles. [References: 42]
机译:研究了碳氢化合物/氟碳阴离子表面活性剂-正十四烷基硫酸钠(STDS)和全氟壬酸钠(SPFN)在水中的胶束形成,并特别注意两种表面活性剂之间的相互作用以及聚集数N混合物中成分的函数(X-STDS)。在40°C下,通过将导数比电导率(偏导数κ/偏导数C)相对于摩尔根(rootC)作图,在离散温度下确定每种组合物的临界胶束浓度(cmc)。此图使我们能够甚至在添加盐(NaCl)的溶液中确定cmc,从而从Corrin-Harkins关系式估计两个系统中胶束(β)的抗衡离子结合程度。在鲁宾和我们自己的理论方程的基础上估算了STDS的胶束组成(Y-STDS)和相互作用参数,并比较了从各个方程获得的结果。尽管Rubingh和我们自己的方程式得出不同的相图,但两者都表明两种表面活性剂之间的相互作用方式和形成的胶束状态显着不同,这取决于表面活性剂混合物(X-STDS)或Y-STDS中的净摩尔分数。根据我们的方程,考虑了平衡离子对混合胶束形成的影响,即平衡离子结合的程度,我们发现存在一个共沸点和一个摩尔分数区域,表明几乎完全分解了混合胶束(0

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