Hill Christopher, Abdullahi Wasiu, Crossman Martin, Griffiths Peter Charles
School of Science, Faculty of Engineering and Science, University of Greenwich, Chatham Maritime, Kent ME4 4TB, UK.
Unilever Research, Port Sunlight, Quarry Road East, Bebington, Wirral CH63 3JW, UK.
Polymers (Basel). 2022 Aug 26;14(17):3504. doi: 10.3390/polym14173504.
This study investigates the flocculation induced destabilization of particulate dispersions by oppositely charged polymer−surfactant complexes, with a particular focus on controlling interactions by modulating the charge ratio Z, (where Z = [+polymer]/[−surfactant]) via [−surfactant] at fixed Cpolymer. Cationic hydroxyethyl cellulose (cat-HEC) polymer-sodium dodecylsulfate (SDS) complexes were prepared with either excess polymer (Z > 1) or surfactant (Z < 1) charges. Anionic particulate dispersions (Ludox and polystyrene-butadiene Latex) were then exposed to the complexes, and solvent relaxation NMR was used to characterize the particle surfaces before and after exposure. In both particulate dispersions, flocculation induced destabilization was enhanced after exposure to cat-HEC-SDS complexes with Z > 1, leaving any excess particle surfaces uncoated after gentle centrifugation. However, complexes with Z < 1 showed no adsorption and destabilization in the Ludox dispersions and only slight destabilization in the Latex dispersions due to possible hydrophobic interactions. Substituting SDS for non-ionic surfactant (C12E6) showed no additional destabilization of the dispersions, but post-centrifugation relaxation rates indicated preferential adsorption of C12E6 onto the particle surfaces. Since the dominant forces are electrostatic, this study highlights the possibility of controlling the interactions between oppositely charged polymer−surfactant complexes and particle surfaces by modulating Z through [−surfactant].
本研究调查了带相反电荷的聚合物 - 表面活性剂复合物引起的颗粒分散体的絮凝失稳,特别关注通过在固定聚合物浓度下调节电荷比Z(其中Z = [阳离子聚合物]/[阴离子表面活性剂]),经由[阴离子表面活性剂]来控制相互作用。制备了阳离子羟乙基纤维素(cat-HEC) - 十二烷基硫酸钠(SDS)复合物,其具有过量的聚合物电荷(Z > 1)或表面活性剂电荷(Z < 1)。然后将阴离子颗粒分散体(硅石溶胶和聚苯乙烯 - 丁二烯乳胶)暴露于这些复合物,并使用溶剂弛豫核磁共振来表征暴露前后的颗粒表面。在这两种颗粒分散体中,暴露于Z > 1的cat-HEC - SDS复合物后,絮凝引起的失稳增强,轻轻离心后留下任何未被包覆的多余颗粒表面。然而,Z < 1的复合物在硅石溶胶分散体中未显示吸附和失稳,而在乳胶分散体中由于可能的疏水相互作用仅显示轻微失稳。用非离子表面活性剂(C12E6)替代SDS未显示分散体有额外的失稳,但离心后的弛豫速率表明C12E6优先吸附在颗粒表面。由于主导力是静电作用,本研究突出了通过[阴离子表面活性剂]调节Z来控制带相反电荷聚合物 - 表面活性剂复合物与颗粒表面之间相互作用的可能性。