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Photo-destructible Surfactants in Microemulsions

机译:微乳液中的照片可破坏性表面活性剂

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A photo-destructible surfactant sodium 4-hexylphenyl-azosulfonate (C6-PAS, Scheme 1) has been employed in normal AOT-stabilized water-in-heptane microemulsions. Phase studies are consistent with initially homogeneous microemulsions, for which significant changes in stability as a function of UV irradiation time are observed. Photolysis of C6-PAS in these systems results in eventual separation of water to yield a Winsor II system. Proton NMR spectra show that C6-PAS undergoes UV-induced decomposition, to yield a mixture of 4-hexylphenol and the non-surface active hexylbenzene as main product. This photo-triggered breakdown gives rise to changes in adsorption and aggregation properties of C6-PAS, representing a unique route to induce microemulsion destabilization. Small-angle neutron scattering (SANS) was used to follow the resulting UV-induced shrinkage of the water nanodroplets: a maximum volume decrease was found to be in the order of 60-70%. Multi-contrast SANS experiments gave further insight, for example it was demonstrated that the surfactant shell thickness remained constant (~9 A). This study represents a novel example of light-induced microemulsion destabilization.
机译:在正常的AOT稳定的水 - 庚烷微乳液中使用了光学可破坏的表面活性剂4-己基苯基 - 乙氧磺酸钠(C6-PAS,方案1)。相研究与最初均匀的微乳液一致,观察到作为UV照射时间的函数的稳定性的显着变化。在这些系统中的C6-PAS光解导致水的最终分离,得到WINSOR II系统。质子NMR光谱显示C6-PAS经历紫外诱导的分解,得到4-己基苯酚和非表面活性己苯的混合物作为主要产物。该光触发的故障导致C6-PA的吸附和聚集性能的变化,代表了诱导微乳液不稳定的独特途径。使用小角度散射(SAN)来遵循所得到的水纳米玻璃的紫外线诱导的收缩:最大体积减少约为60-70%。多对比度SAN实验进一步洞察力,例如,表明表面活性剂壳厚度仍然是恒定的(〜9a)。该研究代表了光诱导的微乳液不稳定的新实例。

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