首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A new model to study the phase transition from microstructures to nanostructures in Ionic/Ionic surfactants mixture
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A new model to study the phase transition from microstructures to nanostructures in Ionic/Ionic surfactants mixture

机译:研究离子/离子表面活性剂混合物中从微观结构到纳米结构的相变的新模型

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The phase behavior and aggregate structures of mixtures of the oppositely charged surfactants cetyltrimethyl ammonium bromide (CTAB) and sodium dodecyl sulfate (SDS) are explored at high dilution by pulsed field gradient stimulated echo (PFG-STE) NMR. The aggregation numbers and hydrodynamic radii of vesicles and mixed micelles were determined by a combination of viscosity and self-diffusion coefficient measurements. The average size of the mixed micelles was larger than that of micelles containing uniformly charged head groups. Analysis of the variations of the self-diffusion coefficient and viscosity with changing concentration of CTAB or SDS in the cationic-rich and anionic-rich regions revealed a phase transition from vesicles to mixed micelles. Differences in the lengths of the CTAB and SDS hydrophobic chains stabilize vesicles relative to other microstructures (e.g., liquid crystalline and precipitate phase), and vesicles form spontaneously over a wide range of compositions in both cationic-rich and anionic-rich solutions. The results obtained from conductometry measurements confirmed this transition. Finally, according to the capacitor model, a new model was developed for estimating the surface potentials and electrostatic free energy (g(elec)). Then we investigated the variations of electrostatic and transfer free energy in phase transition between mixed micelle and vesicle.
机译:通过脉冲场梯度激发回波(PFG-STE)NMR在高稀释度下研究带相反电荷的表面活性剂十六烷基三甲基溴化铵(CTAB)和十二烷基硫酸钠(SDS)的混合物的相行为和聚集结构。囊泡和混合胶束的聚集数和流体动力学半径是通过粘度和自扩散系数测量相结合来确定的。混合胶束的平均尺寸大于包含均匀带电头基团的胶束的平均尺寸。在富阳离子区和富阴离子区中,随着CTAB或SDS浓度的变化,对自扩散系数和粘度的变化进行分析,发现从囊泡到混合胶束的相变。 CTAB和SDS疏水链长度的差异相对于其他微结构(例如液晶和沉淀相)稳定了囊泡,并且在富含阳离子和富含阴离子的溶液中,囊泡在很宽的组成范围内自发形成。从电导测量获得的结果证实了这种转变。最后,根据电容器模型,开发了一种用于估计表面电势和静电自由能(g(elec))的新模型。然后,我们研究了混合胶束与囊泡之间相变过程中静电和转移自由能的变化。

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