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首页> 外文期刊>Journal of Colloid and Interface Science >Physicochemical investigation of mixed surfactant microemulsions: Water solubilization, thermodynamic properties, microstructure, and dynamics
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Physicochemical investigation of mixed surfactant microemulsions: Water solubilization, thermodynamic properties, microstructure, and dynamics

机译:混合表面活性剂微乳液的理化研究:水的增溶,热力学性质,微观结构和动力学

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In this contribution, we report on a systematic investigation of phase behavior and solubilization of water in water-in-heptane or decane aggregates stabilized by mixtures of polyoxyethylene (20) cetyl ether (Brij-58) and cetyltrimethylammonium bromide (CTAB) surfactants with varying compositions in conjugation with 1-pentanol (Pn) at fixed surfactant(s)/Pn ratio and temperature. Synergism in water solubilization was evidenced by the addition of CTAB to Brij-58 stabilized system in close proximity of equimolar composition in both oils. An attempt has been made to correlate composition dependent water solubilization and volume induced conductivity studies to provide insight into the solubilization mechanism of these mixed systems. Conductivity studies reveal the ascending curve in water solubilization capacity-(Brij-58:CTAB, w/w) profile as the interdroplet interaction branch indicating percolation of conductance and the descending curve is a curvature branch due to the rigidity of the interface in these systems. The microstructure of these systems as a function of surfactant composition has been determined by dynamic light scattering (DLS) and Fourier transform infrared spectroscopy (FTIR) measurements. FTIR study reveals increase and decrease in relative population of bound and bulk-like water, respectively, with increase in Brij-58:CTAB (w/w). DLS measurements showed that the droplet hydrodynamic diameter (D_h) decreases significantly with the increase in Brij-58:CTAB (w/w). Further, the interfacial composition and energetic parameters for the transfer of Pn from bulk oil to the interface were evaluated by the dilution method. Formation of temperature-insensitive microemulsions and temperature invariant droplet sizes are evidenced in the vicinity of the equimolar composition. The results are interpreted in terms of a proposed mechanism.
机译:在这项贡献中,我们报告了系统行为的系统性研究,以及水在庚烷或癸烷聚集体中的相行为和增溶作用,该聚集体由聚氧乙烯(20)十六烷基醚(Brij-58)和十六烷基三甲基溴化铵(CTAB)表面活性剂的混合物稳定而变化组合物在固定的表面活性剂/ Pn比和温度下与1-戊醇(Pn)结合。在两种油中等摩尔组成的附近,向Brij-58稳定体系中添加CTAB可以证明水增溶作用的协同作用。已经尝试将依赖于成分的水溶解和体积诱导电导率研究相关联,以提供对这些混合体系的溶解机理的认识。电导率研究揭示了水溶解能力的上升曲线-(Brij-58:CTAB,w / w)曲线,因为小滴间相互作用分支表明了电导的渗流,而下降曲线是曲率分支,这是由于这些系统中界面的刚性。这些系统的微结构作为表面活性剂组成的函数已通过动态光散射(DLS)和傅里叶变换红外光谱(FTIR)测量来确定。 FTIR研究表明,随着Brij-58:CTAB(w / w)的增加,结合水和散装样水的相对种群分别增加和减少。 DLS测量表明,随着Brij-58:CTAB(w / w)的增加,液滴的流体动力直径(D_h)显着减小。此外,通过稀释法评估了Pn从散装油转移到界面的界面组成和能量参数。在等摩尔组合物附近证实了对温度不敏感的微乳状液的形成和温度不变的液滴尺寸。根据提出的机制来解释结果。

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