McLachlan Aleisha, Singh Kulbir, McAlduff Michael, Marangoni D Gerrard, Shortall Samantha, Wettig Shawn D
Dept of Chemistry, St. F. X. University Antigonish NS B2G 2W5 Canada
Sona Nanotech 101 Research Drive Dartmouth NS B2Y 4M9 Canada.
RSC Adv. 2020 Jan 20;10(6):3221-3232. doi: 10.1039/c9ra09432f. eCollection 2020 Jan 16.
Micelle formation enthalpies (Δ values) have been calorimetrically determined at 298 K for three sets of mixed zwitterionic/cationic gemini systems consisting of -dodecyl-,-dimethyl-3-ammonio-1-propanesulfonate (ZW3-12) and a series of structurally related gemini surfactants, the ,'-bis(dimethyldodecyl)-α,ω-alkanediammonium dibromide (12--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 ( ) 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, 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--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.
通过量热法在298K下测定了由3-十二烷基-3-甲基-3-铵基-1-丙烷磺酸盐(ZW3-12)和一系列结构相关的双子表面活性剂,即α,ω-双(二甲基十二烷基)-α,ω-链烷二铵二溴化物(12-n-12)体系组成的三组两性离子/阳离子双子混合体系的胶束形成焓(Δ值)。根据实验测定的和估算的理想胶束形成焓,得到了过量焓。结合我们之前工作中得到的混合胶束中相互作用的非理想度(β)以及过量焓值,根据正规溶液理论(RST)和本村理论确定了混合体系中表面活性剂的过量热力学量。ZW3-12/12-4-12体系的过量焓为正值,当少量两性离子表面活性剂分布到双子胶束中时,过量焓急剧上升。ZW3-12/12-5-12和ZW3-12/12-6-12体系的过量焓也大于0 kJ/mol,并且作为两性离子表面活性剂组成的函数,与ZW3-12/12-4-12混合胶束的过量焓有很大不同。这些结果表明,混合胶束形成的热效应强烈依赖于静电相互作用以及所涉及表面活性剂的结构,具体而言,取决于12-n-12双子表面活性剂连接基团的长度。根据量热数据以及RST和本村理论的应用,我们得到了过量吉布斯自由能和混合熵的估算值。对这三个热力学性质的分析表明,对于涉及双子表面活性剂的混合胶束,焓效应和熵效应在非理想行为中的相对贡献强烈依赖于双子表面活性剂的结构。