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m-s-m cationic gemini and zwitterionic surfactants - a thermodynamic analysis of their mixed micelle formation

机译:M-S-M阳离子双子座和两性离子表面活性剂 - 其混合胶束形成的热力学分析

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Micelle formation enthalpies (Delta H-mic values) have been calorimetrically determined at 298 K for three sets of mixed zwitterionic/cationic gemini systems consisting of N-dodecyl-N,N-dimethyl-3-ammonio-1-propanesulfonate (ZW3-12) and a series of structurally related gemini surfactants, the N,N'-bis(dimethyldodecyl)-alpha,omega-alkanediammonium dibromide (12-s-12) systems. From the experimental and the estimated ideal micelle formation enthalpies, the excess enthalpies were obtained. The degrees of nonideality of the interaction in the mixed micelle (beta(m)) from our previous work was used along with the excess enthalpy values to determine excess thermodynamic quantities of the surfactants in the mixed system according to Regular Solution Theory (RST) and Motomura's theory. The excess enthalpies for the ZW3-12/12-4-12 were positive in magnitude and rose sharply when small amounts of the zwittergent were distributed into the gemini micelles. The excess enthalpies for the ZW3-12/12-5-12 and the ZW3-12/12-6-12 systems were also >0 kJ mol(-1), and as a function of zwittergent composition, were quite different to those of the ZW3-12/12-4-12 mixed micelles. These results indicate that the heat of mixed micelle formation is strongly dependent on electrostatic interactions and the structure of the surfactants involved, specifically, the length of the tether group for the 12-s-12 gemini surfactants. From the calorimetric data and the application of RST and Motomura's theory, we have obtained estimates of the excess Gibbs energy and entropy of mixing. An analysis of the three thermodynamic properties suggests that the relative contributions of enthalpic and entropic effects to nonideal behavior for mixed micelles involving gemini surfactants are strongly dependent on the gemini structure.
机译:胶束形成焓(Delta H-MIC值)在298K中对于由N-十二烷基-N,N-二甲基-3-氨基-1-丙二磺酸盐(ZW3-12)组成的三组混合两性离子/阳离子的Gemini系统进行热敏率测定。 )和一系列结构相关的Gemini表面活性剂,N,N'-BIS(二甲基二癸基) - α,Omega-链烷二铵(12-S-12)系统。从实验和估计的理想胶束形成焓,获得过量的焓。与我们先前的工作中混合胶束(β())中相互作用的非侵扰性与过量的焓值一起使用,以确定根据常规解决方案理论(RST)和的混合系统中的表面活性剂的过量热力学量Motomura的理论。 ZW3-12 / 12-4-12的过量焓幅度为正数,并且当少量Zwittergent分布到Gemini胶束中时急剧上升。 ZW3-12 / 12-5-12和ZW3-12 / 12-6-12系统的过量焓也是> 0 kJ摩尔(-1),并且作为杂金组合物的函数,与那些完全不同ZW3-12 / 12-4-12混合胶束。这些结果表明,混合胶束形成的热量强烈依赖于静电相互作用和所涉及的表面活性剂的结构,具体地是12-S-12 Gemini表面活性剂的系绳的长度。从热量数据和RST和Motomura理论的应用,我们已经获得了多余的GIBBS能量和混合熵的估计。对三种热力学性质的分析表明,诸如涉及GEMINI表面活性剂的混合胶束对非膜行为的相对贡献是强烈的依赖于双子座结构。

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