首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Control of Shape and Size of Polymer Nanoparticles Aggregates in a Single-Step Microcontinuous Flow Process: A Case of Flower and Spherical Shapes
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Control of Shape and Size of Polymer Nanoparticles Aggregates in a Single-Step Microcontinuous Flow Process: A Case of Flower and Spherical Shapes

机译:单步微连续流动过程中聚合物纳米颗粒聚集体形状和尺寸的控制:以花和球形形状为例

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Controlled aggregation of polymer nanoparticles for building anisotropic nano- and microstructures via a self-assembling bottom-up process is an important strategy. Therefore, in this work, the formation of structured poly-(methyl methacrylate) (PMMA) particles with diameters between lower micrometer and submicrometer range by use of a microcontinuous flow arrangement was investigated in the presence of nonionic water-soluble polymer polyvinylpyrrolidone (PVP). The investigations show that the microreaction strategy is well applicable and allows a tuning of size and shape of nanoparticles in dependence on reactant concentrations and flow rate ratios. Larger and complex structured polymer particles have been found at lower PVP concentration, whereas more compact submicron-sized particles were formed at higher PVP concentrations. The addition of ionic surfactants modulates the generation of characteristic particle shapes. The observation of intermediate states between complex flowerlike particles and simple spheres in dependence on the applied concentration of low molecular weight surfactants supports the explanation of particle formation by a mechanism with superposition of particle growth and assembling. When mixed surfactants (PVP?SDS or PVP?CTAB) are used, the final particles shape depends on the concentration of individual concentrations of surfactants and on the competition between mobility, solvation, and micelle formations.
机译:通过自组装自下而上的过程控制聚合物纳米粒子的聚集以构建各向异性的纳米和微观结构是一项重要策略。因此,在这项工作中,研究了在存在非离子型水溶性聚合物聚乙烯吡咯烷酮(PVP)的情况下,通过使用微连续流动装置来形成直径在较低微米与亚微米范围之间的结构化聚甲基丙烯酸甲酯(PMMA)颗粒的过程。 。研究表明,微反应策略非常适用,并且可以根据反应物浓度和流速比调整纳米颗粒的大小和形状。在较低的PVP浓度下发现了较大且复杂的结构化聚合物颗粒,而在较高的PVP浓度下形成了更致密的亚微米尺寸的颗粒。离子表面活性剂的加入调节了特征颗粒形状的产生。取决于低分子量表面活性剂的应用浓度,观察复杂的花状颗粒和简单球之间的中间状态,可以通过颗粒生长和组装的叠加机制来解释颗粒的形成。当使用混合表面活性剂(PVP?SDS或PVP?CTAB)时,最终的颗粒形状取决于表面活性剂各浓度的浓度以及流动性,溶剂化和胶束形成之间的竞争。

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