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首页> 外文期刊>Journal of Applied Polymer Science >Preparation of anionic ion exchange latex particles via heteroaggregation
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Preparation of anionic ion exchange latex particles via heteroaggregation

机译:杂聚制备阴离子交换胶乳颗粒

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To prepare relatively large negatively charged polymer particles in a size range from 0.3 μm to 0.5 μm, having high surface charge densities, the heteroaggregation of small (50-100 nm), highly charged (185 and 421 μeq/g) anionic polystyrene particles onto the surface of larger (317-466 nm) poly(vinylbenzyl choride)-based cationic (10, 614, and 830 μeq/g) particles was carried out. As a result, particles with different surface charges, having a core-shell structure, were successfully prepared. First, aggregated particles were formed via heteroaggregation of the lowest surface charge density anionic particles (185 μeq/g) with the lowest surface charge density cationic particles (10 μeq/g). However, the anionic particles in the shell layer desorbed with time owing to the relatively weak interaction between the two particles. Second, aggregated particles comprised of the highest surface charge density cationic (830 μeq/g) and anionic latex particles (421 μeq/g) were formed. However, to prepare a stable system, an excess of the small anionic particles was required, leaving a large number of small particles present in the aqueous phase, which proved difficult to remove. Finally, aggregated particles were formed by heteroaggregation of cationic particles with an intermediate surface charge density (614 μeq/g) with the highest surface charge anionic particles (421 μeq/g). As a result, not only were core-shell particles formed, but few free small anionic particles remained in the aqueous phase. In this article, the preparation and characterization of each of these aggregates are discussed in terms of particle size, morphology, and extent of incorporation of the functional groups.
机译:为了制备尺寸范围从0.3μm至0.5μm的相对较大的带负电荷的聚合物粒子,它们具有较高的表面电荷密度,需要将小的(50-100 nm),高度带电(185和421μeq/ g)的阴离子聚苯乙烯颗粒杂化聚集到表面上对较大的(317-466 nm)聚(乙烯基苄基氯)阳离子(10、614和830μeq/ g)颗粒进行表面处理。结果,成功制备了具有核-壳结构的具有不同表面电荷的颗粒。首先,通过最低表面电荷密度阴离子颗粒(185μeq/ g)与最低表面电荷密度阳离子颗粒(10μeq/ g)的杂聚形成聚集颗粒。然而,由于两个颗粒之间的相对弱的相互作用,壳层中的阴离子颗粒随时间解吸。第二,形成由最高表面电荷密度阳离子(830μeq/ g)和阴离子胶乳颗粒(421μeq/ g)组成的聚集颗粒。然而,为了制备稳定的系统,需要过量的小阴离子颗粒,在水相中留下大量小颗粒,这证明难以除去。最后,通过具有中等表面电荷密度(614μeq/ g)和最高表面电荷阴离子颗粒(421μeq/ g)的阳离子颗粒的异质聚集形成聚集颗粒。结果,不仅形成核-壳颗粒,而且几乎没有游离的小阴离子颗粒残留在水相中。在本文中,从粒度,形态和官能团的结合程度方面讨论了每种聚集体的制备和表征。

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