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首页> 外文期刊>ACS applied materials & interfaces >Single-Step Microfluidic Synthesis of Various Nonspherical Polymer Nanoparticles via in Situ Assembling: Dominating Role of Polyelectrolytes Molecules
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Single-Step Microfluidic Synthesis of Various Nonspherical Polymer Nanoparticles via in Situ Assembling: Dominating Role of Polyelectrolytes Molecules

机译:通过原位组装的单步微流体合成各种非球形聚合物纳米粒子:聚电解质分子的主导作用

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In this paper, a microfluidic approach has been used for the synthesis of ellipsoidal, dumbbell, rodlike, and necklacelike polymer nanoparticles. High yields of special types of nonspherical nanoparticles have been achieved by the implementation of an emulsion polymerization into microfluidic arrangement with a micro hole-plate reactor for the formation of monomer droplets. Here, in particular, the formation of nonspherical polymer nanoparticles is dependent on the presence of polyelectrolyte surface active molecules such as poly(4-styrenesulfonic acid-co-maleic acid) sodium salt (PSS-co-PM), poly(sodium-p-styrenesulfonate) (PSSS), and polyanetholesulfonic acid sodium salt (PAES). The shapes and sizes of the interparticle nanoassemblies are precisely controlled by adjusting the concentration of polyelectrolytes in the aqueous phase, and by choosing suitable flow rate ratios (aqueous to monomer phase), respectively. The formation of polymer nanoparticles with different morphologies can be explained by a spontaneous in situ assembling under partial electrostatic repulsive control in the single step synthesis. The effect of particle charge and the competition between thermal motion of particles and electrostatic repulsion on the spontaneous assembling under the condition of a limited polarizability are discussed here as an important factor for the formation process of nonspherical polymer nanoparticles.
机译:在本文中,已经用于合成椭圆形,哑铃,棒状和领型聚合物纳米粒子的微流体方法。通过将乳液聚合的微流体布置的实施方式实现了具有用于形成单体液滴的微流体布置的微流体布置的高产量。特别地,非球形聚合物纳米颗粒的形成取决于聚电解质表面活性分子如聚(4-苯乙烯磺酸 - 二氧化马来酸)钠盐(PSS-Co-PM),聚(钠-P - 磺酸盐)(PSS)和聚酰硫酸钠盐(PAES)。通过调节水相中的聚电解质的浓度,并分别选择合适的流速比(含水至单体相)来精确控制颗粒间纳米簇的形状和尺寸。在单步合成中的部分静电排斥控制下,可以通过在单步合成中的部分静电排斥控制下进行不同形态的聚合物纳米颗粒的形成。这里讨论了在有限极化性条件下颗粒的粒子电荷和静电运动之间的竞争与静电运动之间的竞争以及颗粒的静电反射效果作为非球形聚合物纳米颗粒形成过程的重要因素。

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