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首页> 外文期刊>New Journal of Chemistry >Aggregate-based sub-CMC solubilization of n-alkanes by monorhamnolipid biosurfactant
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Aggregate-based sub-CMC solubilization of n-alkanes by monorhamnolipid biosurfactant

机译:鼠李糖脂生物表面活性剂对正构烷烃的基于聚集体的亚CMC增溶

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Solubilization of n-decane, dodecane, tetradecane and hexadecane by monorhamnolipid biosurfactant (monoRL) at concentrations near the critical micelle concentration (CMC) was investigated. The apparent solubility of all four alkanes increases linearly with increasing monoRL concentration either below or above the CMC. The capacity of solubilization presented by the molar solubilization ratio (MSR), however, is stronger at monoRL concentrations below the CMC. The MSR decreases following the order dodecane > decane > tetradecane > hexadecane at monoRL concentrations below the CMC. Formation of aggregates at sub-CMC monoRL concentrations was demonstrated by dynamic light scattering (DLS) and cryo-transmission electron microscopy. DLS-based size (d) and zeta potential of the aggregates decrease with increasing monoRL concentration. The surface excess (Gamma) of monoRL calculated based on alkane solubility and aggregate size data increases rapidly with increasing bulk monoRL concentration and then asymptotically approaches the maximum surface excess (Gamma(max)). The relationship between Gamma and d indicates that the excess of monoRL molecules at the aggregate surface greatly impacts the surface curvature. The results demonstrate formation of aggregates for alkane solubilization at monoRL concentrations below the CMC, indicating the potential of employing low concentrations of rhamnolipid for enhanced solubilization of hydrophobic organic compounds.
机译:研究了单鼠李糖脂生物表面活性剂(monoRL)在接近临界胶束浓度(CMC)的条件下对正癸烷,十二烷,十四烷和十六烷的增溶作用。在CMC之下或之上,随着monoRL浓度的增加,所有四种烷烃的表观溶解度均呈线性增加。但是,在低于CMC的monoRL浓度下,由摩尔溶解比(MSR)表示的溶解能力更强。在低于CMC的monoRL浓度下,MSR按照十二烷>癸烷>十四烷>十六烷的顺序降低。通过动态光散射(DLS)和低温透射电子显微镜证实了在亚CMC monoRL浓度下聚集体的形成。聚集体的基于DLS的大小(d)和Zeta电位随着monoRL浓度的增加而减小。基于烷烃溶解度和聚集体尺寸数据计算的monoRL的表面过量(Gamma)随着整体monoRL浓度的增加而迅速增加,然后渐近地接近最大表面过量(Gamma(max))。 Gamma和d之间的关系表明,聚集体表面上过量的monoRL分子会极大地影响表面曲率。结果表明,在低于CMC的monoRL浓度下,形成了用于烷烃增溶的聚集体,表明使用低浓度鼠李糖脂增强疏水性有机化合物的增溶能力。

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