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首页> 外文期刊>Journal of Colloid and Interface Science >Effect of temperature on the surface phase behavior and micelle formation of a mixed system of nonionic/anionic surfactants
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Effect of temperature on the surface phase behavior and micelle formation of a mixed system of nonionic/anionic surfactants

机译:温度对非离子/阴离子表面活性剂混合体系表面相行为和胶束形成的影响

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The adsorption and micellar behavior of diethylene glycol mono-n-tetradecyl ether (C14E2), sodium 3,6,9,12-tetraoxaoctacosanoate (TOOCNa), and their mixture at a 1:1 molar ratio have been studied by film balance, Brewster angle microscopy (BAM), and surface tensiometry at different temperatures. The monolayers of pure C14E2 and its mixture with TOOCNa show a first-order phase transition with a conspicuous cusp point in their respective adsorption isotherms. This is further confirmed by the observation of bright two-dimensional condensed phase domains visualized by BAM just after the appearance of the phase transition. It is interesting to note here that for C14E2, condensed domains are observed up to 19 C, while in the mixed system, they are observed up to 22 C. To understand why in the mixed system the domains are observed at higher temperatures than for pure C14E2, we have measured the temperature dependency of the equilibrium surface tension at greater than or equal tocmc (y(cmc)) values of both the pure and the mixed systems. The gamma(cmc) values of pure C14E2 remain almost constant, while those of pure TOOCNa and its mixture with C14E2 decrease appreciably with increasing temperature. It is concluded that higher degree of dehydration of the ethylene oxide (EO) chain reduces the head-group size of TOOCNa, which outweighs the combined effect of the repulsive interactions between the head-groups and the thermal motion of the adsorbed molecules. Furthermore, C14E2 being inserted into the TOOCNa monolayer reduces the electrostatic repulsions between the charged heads, and consequently, the adsorbed monolayers attain closer molecular packing. As a result, the gamma(cmc) values of both pure TOOCNa and its mixture with C14E2 decrease with increasing temperature. This facilitates the formation of condensed domains in the mixed system at higher temperatures, whereas none of the individual members can show any indicative feature of phase transition under the same experimental conditions. (C) 2004 Elsevier Inc. All rights reserved.
机译:通过薄膜平衡法研究了二乙二醇单正十四烷基醚(C14E2),3,6,9,12-四氧杂二十二碳酸钠(TOOCNa)及其混合物在1:1摩尔比下的吸附和胶束行为角度显微镜(BAM)和不同温度下的表面张力测定。纯C14E2的单层及其与TOOCNa的混合物在它们各自的吸附等温线中显示出具有明显尖点的一阶相变。在相变出现之后,通过BAM可视化的明亮二维凝聚相域的观察进一步证实了这一点。有趣的是,对于C14E2,在最高19 C时观察到缩合结构域,而在混合系统中最高观察到22C。在混合系统中为什么要在比纯净温度更高的温度下观察到结构域C14E2,我们已经测量了平衡表面张力在大于或等于纯系统和混合系统的cmc(y(cmc))值的温度依赖性。纯C14E2的gamma(cmc)值几乎保持不变,而纯TOOCNa及其与C14E2的混合物的gamma(cmc)值随温度升高而明显降低。结论是,较高的环氧乙烷(EO)链脱水程度会降低TOOCNa的头基大小,这超过了头基之间的排斥相互作用和被吸附分子的热运动的综合作用。此外,将C14E2插入TOOCNa单分子层可减少带电头之间的静电排斥,因此,吸附的单分子层将获得更紧密的分子堆积。结果,纯TOOCNa及其与C14E2的混合物的γ(cmc)值均随温度升高而降低。这有助于在较高温度下在混合系统中形成缩合结构域,而在相同的实验条件下,没有一个独立的成员显示相变的任何指示性特征。 (C)2004 Elsevier Inc.保留所有权利。

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