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Surface Deposition and Phase Behavior of Oppositely Charged Polyion-Surfactant Ion Complexes. 2. A Means to Deliver Silicone Oil to Hydrophilic Surfaces

机译:带相反电荷的聚离子表面活性剂离子配合物的表面沉积和相行为。 2.将硅油输送到亲水表面的方法

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The delivery of emulsified silicone oil to hydrophilic silica surfaces by mixtures of cationlc polysaccharides and SDS has been studied by in situ null ellipsometry, dynamic light scattering, and turbidity measurements. The emulsion contained silicone oil droplets with a hydrodynamic radius of 18 nm, stabilized by anionic and nonionic surfactants. The investigated polysaccharides were cat-guar and cat-HEC. Both polyions have qualitatively similar adsorption and bulk properties in mixtures with surfactant and emulsion droplets, and both are able to deliver emulsion droplets to the hydrophilic silica surface under suitable conditions. However, there are important quantitative differences that are attributed to a more hydrophobic character of cat-HEC than of cat-guar. The differences in hydrophobicity affect the adsorption from polyelectrolyte/emulsion/surfactant mixtures to hydrophilic silica, especially when an initially surfactant-rich mixture is brought toward phase separation by dilution. Under these conditions, adsorption is obtained only for mixtures with cat-guar. Dynamic light scattering performed on the bulk solutions reveals different aggregation behavior of the cat-guar and the cat-HEC with the silicone oil droplets in the studied surfactant concentration range and the results agree with findings from the adsorption study. Adsorption during dilution of a polyelectrolyte- surfactant mixed solution in the presence of silicone oil droplets gives a larger adsorbed amount and a thicker layer compared to the polyelectrolyte-surfactant mixture without emulsion.
机译:通过原位椭偏法,动态光散射和浊度测量研究了通过阳离子多糖和SDS混合物将乳化的硅油输送到亲水性二氧化硅表面。该乳液包含具有18 nm流体力学半径的硅油滴,并通过阴离子和非离子表面活性剂稳定。所研究的多糖是猫瓜耳胶和猫-HEC。两种聚离子在与表面活性剂和乳液小滴的混合物中都具有定性相似的吸附和本体性质,并且都能够在合适的条件下将乳液小滴递送至亲水性二氧化硅表面。但是,存在重要的定量差异,这归因于cat-HEC的疏水性高于cat-瓜尔胶的疏水性。疏水性的差异会影响从聚电解质/乳液/表面活性剂混合物到亲水性二氧化硅的吸附,特别是当最初富含表面活性剂的混合物通过稀释进行相分离时。在这些条件下,仅与猫瓜耳胶的混合物才能获得吸附。在本体溶液上进行的动态光散射显示,在所研究的表面活性剂浓度范围内,瓜瓜胶和cat-HEC与硅油滴的聚集行为不同,结果与吸附研究的结果相符。与没有乳液的聚电解质-表面活性剂混合物相比,在存在硅油滴的情况下稀释聚电解质-表面活性剂混合溶液期间的吸附产生更大的吸附量和更厚的层。

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