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Impact of Adsorption Layer Properties on Drainage Behavior of Microscopic Foam Films: The Case of Cationic/Nonionic Surfactant Mixtures

机译:吸附层性能对微观泡沫膜排水行为的影响:阳离子/非离子表面活性剂混合物的情况

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Aqueous mixtures of cationic hexadecyltrimethylammonium chloride (CTAC) and nonionic pentaethyleneglycol monododecyl ether (C12E5) are investigated. Adsorption layer properties are systematically studied within a wide concentration range for a 1:1 molar ratio of the surfactants. Surface tension and dilatational rheology measurements are conducted by profile analysis tensiometry. The interfacial data are juxtaposed to drainage kinetics and stability results for microscopic foam films, investigated by microinterferometric thin liquid film instrumentation. The obtained results give experimental evidence of synergistic interactions in the studied solutions, as compared to the corresponding single surfactant systems. Specific runs of dynamic and equilibrium surface tension curves are registered against the total surfactant quantity; the surface dilatational elasticities for the mixtures are systematically higher. A clear correlation is established between adsorption layer performance and foam film characteristics. The maxima of the film lifetimes are well outlined, and the respective values are shifted towards lower overall concentrations. The reported results substantiate the key role of the adsorption layers, and the surface dilatational properties in particular, for foam film drainage kinetics and stability. The well-expressed synergy observed in adsorption layer and foam film properties suggests the substantial benefits of using mixed surfactant systems in the design and fine-tuning of foam systems for innovative applications.
机译:的阳离子十六烷基甲基氯化铵(CTAC)和非离子pentaethyleneglycol单十二烷基醚(C12E5)的水性混合物进行了研究。吸附层性质的宽浓度范围内系统地研究了1:表面活性剂的摩尔比为2:1。表面张力和流变学疏密测量是通过剖面分析张力测量进行。界面数据并置到排水动力学和稳定性结果微观泡沫薄膜,通过microinterferometric液体薄膜仪表调查。将所获得的结果给出在所研究的溶液的协同相互作用的实验证据,相比于相应的单一表面活性剂系统。动态和平衡表面张力曲线的特定运行被注册对总表面活性剂的数量;用于混合物中的表面弹性疏密是系统地高。一个明显的相关性被吸附层的性能和发泡膜的特性之间建立。膜寿命的最大值是公概述的,并且各值朝向更低的总浓度偏移。所报道的结果证实了吸附层的关键作用,并且该表面在特定疏密特性,发泡膜排水动力学和稳定性。的良好表达的协同作用在吸附层和泡沫膜性质表明在设计和泡沫系统为创新应用的微调使用混合表面活性剂体系的实质性的好处观察。

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