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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >High-Pressure Studies on Aggregation Number of Surfactant Micelles Using the Fluorescence Quenching Method
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High-Pressure Studies on Aggregation Number of Surfactant Micelles Using the Fluorescence Quenching Method

机译:使用荧光猝灭法高压研究表面活性剂胶束的聚集数

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摘要

The aggregation number of a nonionic surfactant micelle, Triton X 100 (TX100), in aqueous solution was determined as a function of pressure by using the method of steady-state fluorescence quenching. The method of this work uses the fluorescence quenching of a probe (pyrene) by a quencher (coumarin 153), which are solubilized within a micelle. With increasing pressure, the aggregation number of TX100 takes a minimum. Namely, it decreses from 250 at atmospheric pressure down to 80 at around 100-150 MPa and then increases upt o 230 at 500 MPa, the highest pressure studied. This behavior is closely related to the turnover phenomenon of critical micelle concentration (cmc) against pressure. By taking the pressure effect on the micellar concentration into account, it is demonstrated that in addition to the equilibrium between dispersed state and micellar state, there are equilibria among different-sized micelles.
机译:通过使用稳态荧光猝灭的方法,确定非离子表面活性剂胶束Triton X 100(TX100)在水溶液中的聚集数与压力的关系。这项工作的方法使用通过淬灭剂(香豆素153)对探针(py)进行荧光淬灭的方法,该方法可溶于胶束中。随着压力的增加,TX100的聚集数量最小。即,它从大气压下的250降低到100-150 MPa左右的80,然后在500 MPa升高230,这是研究的最高压力。此行为与临界胶束浓度(cmc)对抗压力的周转现象密切相关。通过考虑对胶束浓度的压力影响,证明了除了分散状态和胶束状态之间的平衡之外,不同尺寸的胶束之间也存在平衡。

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