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Synthesis and characterization of novel functional electrosterically stabilized colloidal particles prepared by emulsion polymerization using a strongly ionized amphiphilic diblock copolymer

机译:使用强电离的两亲性二嵌段共聚物通过乳液聚合制备的新型功能性电空间稳定胶体颗粒的合成与表征

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摘要

Amphiphilic diblock copolymers such as poly(styrene)--poly(styrene sulfonate) (PS--PSS) (Matsuoka, H.; Maeda, S.; Kaewsaiha, P.; Matsumoto, K. , , 7412), belong to a class of new polymeric surfactants that ionize strongly in aqueous media. We investigated their self-assembly behavior in aqueous solutions and used them as an emulsifier to prepare electrosterically stabilized colloidal particles of different diameters between 70 to 400 nm. We determined the size, size polydispersity, effective charge, total dissociable charge, structural ordering, and phase behavior using light scattering, transmission electron microscopy (TEM), small-angle neutron scattering (SANS), and potentiometric titration. These experiments clearly demonstrated that all of the synthesized particles were nearly monodisperse (polydispersity index ≤ 6%). The results of DLS and TEM clearly suggested the existence of hairy particles. The form factors obtained by SANS were well described by a polydisperse sphere model. The estimated total number of dissociable charges per particle was found to be larger than 10⁴, whereas the effective charges per particle were found to be around 1000. This significant difference suggested the confinement of charges inside the corona regions of the polyelectrolyte brush shell. Finally, these monodisperse particles were found to self-assemble into 3D ordered colloidal crystalline arrays at a low volume fraction (= 0.00074) that diffract light in the visible region.
机译:两亲性二嵌段共聚物例如聚(苯乙烯)-聚(苯乙烯磺酸盐)(PS-PSS)(Matsuoka,H .; Maeda,S .; Kaewsaiha,P .; Matsumoto,K。,, 7412)属于一类在水性介质中强烈电离的新型聚合物表面活性剂。我们研究了它们在水溶液中的自组装行为,并将其用作乳化剂来制备直径在70至400 nm之间的静电稳定的胶体颗粒。我们使用光散射,透射电子显微镜(TEM),小角中子散射(SANS)和电位滴定法确定了尺寸,尺寸多分散性,有效电荷,总可解离电荷,结构有序性和相行为。这些实验清楚地表明,所有合成的颗粒几乎都是单分散的(多分散指数≤6%)。 DLS和TEM的结果清楚地表明存在毛状颗粒。通过SANS获得的形状因数通过多分散球体模型得到了很好的描述。发现每个粒子的可解离电荷的总数估计大于10 5,而每个粒子的有效电荷被发现为1000左右。这一显着差异表明电荷被限制在聚电解质电刷壳的电晕区域内。最后,发现这些单分散颗粒以低的体积分数(= 0.00074)自组装成3D有序的胶体晶体阵列,从而在可见光区域衍射光。

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