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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Cosolvent Effects on the Spontaneous Formation of Nanorod Vesicles in Catanionic Mixtures in the Rich Cationic Region
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Cosolvent Effects on the Spontaneous Formation of Nanorod Vesicles in Catanionic Mixtures in the Rich Cationic Region

机译:共溶剂对富阳离子区阳离子混合物中纳米棒囊泡自发形成的影响

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The aggregation behavior of cation-rich catanionic mixtures of cetyitrimethyl ammonium bromide (CTAB) and sodium dodecyl sulfate (SDS) was investigated in water-ethylene glycol (EG) solutions by perforating surface tension, electrical conductivity, pulsed field gradient nuclear magnetic resonance, transmission electron microscopy, and cyclic voltammetry measurements. Different physicochemical properties such as the critical micelle concentration, degree of counterion dissociation (α), interfacial properties, aggregation numbers, morphology of aggregates, and interparticle interaction parameters were determined. Cosolvent effects on the interactions between the two surfactants CTAB and SDS were analyzed on the basis of regular solution theory, both for mixed monolayers at the air/liquid interface (β~δ) and for mixed micelles. It was shown that an excess of cationic surfactant resulted in the formation of nonspherical vesicles. These were predominantly nanorod vesicles in water-EG mixed solvents. The interparticle interactions were assessed in terms of cosolvent effects on the micellar surface charge density, the sphere-to-rod morphology change, and the phase transition from vesicles to mixed micelles. Moreover, the variation of the repulsive electrostatic potential energy between two pairs of aggregates was investigated for two modes of nanostructural transition, namely the transition between spherical and rod-like micelles and the transition between rod-like micelles and nanorod vesicles.
机译:通过穿孔表面张力,电导率,脉冲场梯度核磁共振,透射电镜研究了在水-乙二醇(EG)溶液中富含阳离子的十六烷基三甲基溴化铵(CTAB)和十二烷基硫酸钠(SDS)阳离子混合物的聚集行为。电子显微镜和循环伏安法测量。确定了不同的理化性质,例如临界胶束浓度,抗衡离子解离度(α),界面性质,聚集数,聚集体的形态以及颗粒间的相互作用参数。基于常规溶液理论,分析了助溶剂对两种表面活性剂CTAB和SDS之间相互作用的影响,包括气/液界面处的混合单层(β〜δ)和胶束混合。结果表明,过量的阳离子表面活性剂导致形成非球形囊泡。这些主要是在水-EG混合溶剂中的纳米棒囊泡。根据助溶剂对胶束表面电荷密度,球对棒的形态变化以及从囊泡到混合胶束的相变的影响,评估了颗粒间的相互作用。此外,针对两种纳米结构转变模式,即球形和棒状胶束之间的转变以及棒状胶束和纳米棒囊泡之间的转变,研究了两对聚集体之间排斥静电势能的变化。

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