Faculty of Life and Environmental Sciences, University of Tsukuba, 1-1-1, Tennodai, Tsukuba, Ibaraki 305-8572, Japan.
Adv Colloid Interface Sci. 2015 Dec;226(Pt A):115-21. doi: 10.1016/j.cis.2015.09.005. Epub 2015 Sep 30.
The study of interpolyelectrolyte complex (IPEC) formation between cationic microgel and polyanion was presented. The size and molecular weight of cationic microgel are much larger than those of linear anionic polyelectrolyte. The resulting IPEC was divided by dynamic light scattering (DLS), static light scattering (SLS), and turbidity or spectrometry; (i) water-soluble intra-particle complexes consisting of one microgel to which linear polyelectrolytes bind; (ii) complex coacervates (inter-particle complexes composed of aggregated intra-particle complexes); and (iii) insoluble amorphous precipitates. These types depended on not only the mixing ratio of polyanion to cationic microgel but also salt concentration. This trend was discussed from IPEC's composition, thermodynamics of IPEC formation and the salt effect on intermolecular interactions which were expected in IPEC formation. The results obtained from the use of microgel in IPEC's study suggested that not only electrostatic interaction but also hydrophobic interaction play an important role in the aggregation or association of IPEC.
本文研究了阳离子微凝胶与聚阴离子之间聚电解质复合物(IPEC)的形成。阳离子微凝胶的尺寸和分子量远大于线性阴离子聚电解质。通过动态光散射(DLS)、静态光散射(SLS)、浊度或分光光度法对所得 IPEC 进行了分析;(i)由一个微凝胶组成的水溶性粒子内复合物,该微凝胶与线性聚合物结合;(ii)复合凝聚物(由聚集的粒子内复合物组成的粒子间复合物);和(iii)不溶性无定形沉淀物。这些类型不仅取决于聚阴离子与阳离子微凝胶的混合比,还取决于盐浓度。从 IPEC 的组成、IPEC 形成的热力学以及盐对 IPEC 形成中分子间相互作用的影响等方面讨论了这一趋势。使用微凝胶进行 IPEC 研究的结果表明,在 IPEC 的聚集或缔合中,不仅静电相互作用,而且疏水相互作用也起着重要作用。