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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Influence of calcium ions on rhamnolipid and rhamnolipid/anionic surfactant adsorption and self-assembly
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Influence of calcium ions on rhamnolipid and rhamnolipid/anionic surfactant adsorption and self-assembly

机译:钙离子对鼠李糖脂和鼠李糖脂/阴离子表面活性剂吸附和自组装的影响

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The impact of Ca~(2+) counterions on the adsorption at the air-water interface and self-assembly in aqueous solution of the rhamnolipid biosurfactant and its mixture with the anionic surfactant sodium dodecylbenzenesulfonate, LAS, has been studied using neutron reflectometry and small-angle neutron scattering. The results illustrate how rhamnolipids are calcium tolerant and how their blending with conventional anionic surfactants improves the calcium tolerance of the anionic surfactant. Ca~(2+) has relatively little effect upon the adsorption and self-assembly of the monorhamnose, R1, and dirhamnose, R2, rhamnolipids, even at high pH, due to their predominantly nonionic nature. For R1/R2 mixtures the addition of Ca ~(2+) has little impact upon the adsorbed amount or the surface composition. For R2/LAS mixtures the addition of Ca~(2+) results in an increased adsorption and a surface slightly richer in R2. The weak binding of Ca~(2+) to R1 and R2 does result in a change to the degree of ionization of the micelles and especially for mixed R1/R2 micelles at R1-rich solution compositions. The stronger binding of Ca~(2+) to LAS results in the addition of Ca~(2+) having a much greater impact on the self-assembly of R1/LAS and R2/LAS mixtures. For R1/LAS mixtures the addition of Ca~(2+) promotes the formation of more planar structures, even at low surfactant concentrations where in the absence of Ca~(2+) mixed globular micelle formation dominates. In R2/LAS mixtures, where there is a greater contrast between the high and low preferred curvatures associated with R2 and LAS, the addition of Ca~(2+) results in a more complex evolution in micellar aggregation and the degree of ionization of the micelles. This results in variations in Ca~(2+) binding that promotes micellar structures in which a spatial segregation of the two surfactant components within the micelle occurs.
机译:使用中子反射法研究了Ca〜(2+)反离子对鼠李糖脂生物表面活性剂及其与阴离子表面活性剂十二烷基苯磺酸钠LAS的混合物在空气-水界面处吸附和在水溶液中自组装的影响角中子散射。结果说明鼠李糖脂如何耐钙以及它们与常规阴离子表面活性剂的掺混如何改善阴离子表面活性剂的钙耐受性。 Ca〜(2+)由于主要是非离子性质,即使在高pH下,对单鼠李糖R1和地鼠李糖R2鼠李糖脂的吸附和自组装影响也相对较小。对于R1 / R2混合物,添加Ca〜(2+)对吸附量或表面组成影响很小。对于R2 / LAS混合物,添加Ca〜(2+)导致吸附增加,并且表面的R2稍微富集。 Ca〜(2+)与R1和R2的弱结合确实会导致胶束的离子化程度发生变化,尤其是对于富含R1的溶液组合物中混合的R1 / R2胶束而言。 Ca〜(2+)与LAS的较强结合导致Ca〜(2+)的添加对R1 / LAS和R2 / LAS混合物的自组装具有更大的影响。对于R1 / LAS混合物,即使在低表面活性剂浓度下,Ca〜(2+)的添加也促进了更多平面结构的形成,而在缺少Ca〜(2+)的情况下,混合球状胶束的形成仍占主导地位。在R2 / LAS混合物中,与R2和LAS相关的高曲率和低曲率之间存在较大的反差,添加Ca〜(2+)会导致胶束聚集和离子化程度的变化更为复杂。胶束。这导致Ca〜(2+)结合的变化,从而促进了胶束结构,其中在胶束中发生了两种表面活性剂组分的空间分离。

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