首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-aggregation of mixtures of oppositely charged polyelectrolytes and surfactants studied by rheology, dynamic light scattering and small-angle neutron scattering
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Self-aggregation of mixtures of oppositely charged polyelectrolytes and surfactants studied by rheology, dynamic light scattering and small-angle neutron scattering

机译:通过流变,动态光散射和小角中子散射研究带相反电荷的聚电解质和表面活性剂混合物的自聚集

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In this study, the phase behavior, structure and properties of systems composed of the cationic, cellulose-based polycation JR 400 and the anionic surfactants sodium dodecylbenzenesulfonate (SDBS) or sodium dodecylethoxysulfate (SDES), mainly in the semidilute regime, were examined. This system shows the interesting feature of a very large viscosity increase by nearly 4 orders of magnitude as compared to the pure polymer solution already at very low concentrations of 1 wt %. By using rheology, dynamic light scattering (DLS), and small-angle neutron scattering (SANS), we are able to deduce systematic correlations between the molecular composition of the systems (characterized by the charge ratio Z = [+_(polymer)]/[-_(surfactant)]), their structural organization and the resulting macroscopic flow behavior. Mixtures in the semidilute regime with an excess of polycation charge form highly viscous network structures containing rodlike aggregates composed of surfactant and polyelectrolyte that are interconnected by the long JR 400 chains. Viscosity and storage modulus follow scaling laws as a function of surfactant concentration (η ~ cs~4; G_0 ~ cs~(1.5)) and the very pronounced viscosity increase mainly arises from the strongly enhanced structural relaxation time of the systems. In contrast, mixtures with excess surfactant charges form solutions with viscosities even below those of the pure polymer solution. The combination of SANS, DLS, and rheology shows that the structural, dynamical, and rheological properties of these oppositely charged polyelectrolyte/surfactant systems can be controlled in a systematic fashion by appropriately choosing the systems composition.
机译:在这项研究中,研究了由阳离子,基于纤维素的聚阳离子JR 400和阴离子表面活性剂十二烷基苯磺酸钠(SDBS)或十二烷基乙氧基硫酸钠(SDES)组成的体系的相行为,结构和性能,主要是在半稀释状态下。该系统显示出令人感兴趣的特征,即与已经在1 wt%的极低浓度下的纯聚合物溶液相比,粘度增加了将近4个数量级。通过使用流变学,动态光散射(DLS)和小角中子散射(SANS),我们能够推断出系统分子组成之间的系统相关性(由电荷比Z = [+ _(聚合物)]表征) / [-_(表面活性剂)]),它们的结构组织以及由此产生的宏观流动行为。半稀释状态下具有过量聚阳离子电荷的混合物形成高粘性网络结构,该结构包含由表面活性剂和聚电解质组成的棒状聚集体,这些聚集体通过长JR 400链相互连接。粘度和储能模量随表面活性剂浓度(η〜cs〜4; G_0〜cs〜(1.5))的变化而遵循比例定律,粘度的显着增加主要是由于体系结构弛豫时间的大幅增加所致。相反,具有过量表面活性剂电荷的混合物形成粘度甚至低于纯聚合物溶液的粘度的溶液。该结构,动力学和流变这些带相反电荷的聚电解质/表面活性剂体系的性质可以以系统的方式通过适当地选择系统的组合物来控制SANS,DLS和流变节目的组合。

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