首页> 外文期刊>Journal of Surfactants and Detergents >Micellar and Interfacial Behavior of Cationic Benzalkonium Chloride and Nonionic Polyoxyethylene Alkyl Ether Based Mixed Surfactant Systems
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Micellar and Interfacial Behavior of Cationic Benzalkonium Chloride and Nonionic Polyoxyethylene Alkyl Ether Based Mixed Surfactant Systems

机译:阳离子苯扎氯铵和非离子聚氧乙烯烷基醚的混合表面活性剂体系的胶束和界面行为

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摘要

Micellar and interfacial properties of mixed surfactant systems comprising benzalkonium chloride, a cationic surfactant and nonionic polyoxyethylene alkyl ether surfactants (POE: C_(10)E7, C_(10)E8, C_(10)E9, C_(10)E_(10)) have been investigated by surface tension, fluorescence and dynamic light scattering techniques. Critical micelle concentration (CMC) for different mixing mole fractions has been investigated by surface tension and fluorescence measurements. Ideal CMC, mixed micellar composition (X1~m, X1~σ), interaction parameters for mixed micelles (β~m) and adsorption monolayer (β~σ), surface excess concentration (Γ_(max)), minimum area per molecule (A_(min)) and related thermodynamic properties have also been determined. Lowering of the CMC and negative interaction parameter values indicate synergism in the mixed micelle and monolayer formed, whereas, thermodynamic parameters evaluated for the proposed mixed systems indicate stability of the resulting micelles and monolayer. Micellar aggregation number (N_(agg)) and hydrodynamic diameter (D_h) computed from fluorescence and dynamic light scattering measurements respectively illustrate micellar growth in the mixed state. Results obtained for the proposed mixed systems can be helpful in designing smart materials for industrial surfactant based formulations.
机译:包含苯扎氯铵,阳离子表面活性剂和非离子聚氧乙烯烷基醚表面活性剂(POE:C_(10)E7,C_(10)E8,C_(10)E9,C_(10)E_(10)的混合表面活性剂体系的胶束和界面特性)已通过表面张力,荧光和动态光散射技术进行了研究。通过表面张力和荧光测量研究了不同混合摩尔分数的临界胶束浓度(CMC)。理想CMC,混合胶束组成(X1〜m,X1〜σ),混合胶束(β〜m)和吸附单层(β〜σ)的相互作用参数,表面过量浓度(Γ_(max)),每分子最小面积( A_(min))和相关的热力学性质也已确定。 CMC的降低和负相互作用参数值表明在形成的混合胶束和单分子层中具有协同作用,而对建议的混合体系评估的热力学参数表明所得胶束和单分子层的稳定性。通过荧光和动态光散射测量计算出的胶束聚集数(N_(agg))和流体动力学直径(D_h)分别说明了胶束在混合状态下的生长。提议的混合系统获得的结果可有助于设计用于工业表面活性剂配方的智能材料。

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