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Surface and solution properties of single and mixed gemini/conventional micelles on solubilization of polycyclic aromatic hydrocarbons

机译:单一和混合双子/常规胶束对多环芳烃增溶的表面和溶液性质

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摘要

The surface properties and mixed micellization behaviour of single gemini bis(hexadecyldimethylammonium) pentane dibromide (G5) surfactant, three conventional surfactants (Cationic cetyltrimethylammonium bromide (CTAB), anionic sodium dodecyl sulfate (SDS) and nonioinic Polyethylene glycol dodecyl ether (Brij35)) and their equimolar binary mixtures have been investigated by surface tension and spectrophotometry methods at 300K. The critical micelle concentration (CMC), surface properties, Gamma(max) (maximum surface excess), A(min) (minimum surface area per molecule) and pi(CMC) (surface pressure at the CMC) have been determined. The deviation from: the ideal of the mixed micelles has been discussed on the basis of Clint theory. For mixed systems, regular solution theory (Rubingh) and Rosen's theories are used, which helps to evaluate the composition of the mixed micelle, the activity coefficient, and interaction parameters (beta and beta degrees). Negativity of interaction parameters (beta and beta degrees) for mixed micelle formation indicates attractive interaction for all the system.
机译:单一双双双(十六烷基二甲基铵)戊烷二溴化物(G5)表面活性剂,三种常规表面活性剂(阳离子十六烷基三甲基溴化铵(CTAB),阴离子十二烷基硫酸钠(SDS)和非碘聚乙二醇十二烷基醚(Brij35))的表面性质和混合胶束化行为通过表面张力和分光光度法在300K下研究了它们的等摩尔二元混合物。确定了临界胶束浓度(CMC),表面性质,Gamma(max)(最大表面过量),A(min)(每个分子的最小表面积)和pi(CMC)(CMC处的表面压力)。在克林特理论的基础上讨论了与混合胶束的理想的偏离。对于混合系统,使用常规溶液理论(Rubingh)和Rosen理论,这有助于评估混合胶束的组成,活度系数和相互作用参数(β和β度)。混合胶束形成的相互作用参数(β和β度)为负值表示所有系统都具有有吸引力的相互作用。

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