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Poly(dimethylsiloxane)-Stabilized Polymer Particles from Radical Dispersion Polymerization in Nonpolar Solvent: Influence of Stabilizer Properties and Monomer Type

机译:非极性溶剂中自由基分散聚合的聚(二甲基硅氧烷) - 稳定聚合物颗粒:稳定剂性质和单体类型的影响

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摘要

Particles used in electrophoretic display applications (EPD) must possess a number of specific properties ranging from stability in a nonaqueous solvent, high reflectivity, low polydispersity, and high charge density to name but a few. The manufacture of such particles is best carried out in the solvent of choice for the EPD. This opens up new interests in the study of nonaqueous dispersion polymerization methods, which deliver polymer particles suspended in low dielectric constant solvents. We explore in this article the use of a poly(dimethylsiloxane) macromonomer for the stabilization of poly(methyl methacrylate) polymer particles in dodecane, a typical solvent of choice for EPDs. The use of this stabilizer is significant for this method as it is directly soluble in the reaction medium as opposed to traditionally used poly(12-hydroxystearic acid)-based stabilizers. Additionally, the present study serves as a baseline for subsequent work, where nonaqueous dispersion polymerization will be used to create polymer particles encapsulating liquid droplets and solid pigment particles. In this article, the influence of the macromonomer molecular weight and concentration on the properties of the synthesized particles is studied. In addition, we investigate the possibility of synthesizing polymer particles from other monomers both as a comonomer for methyl methacrylate and as the only monomer in the process. The influence of macromonomer concentration is also studied throughout all experiments.
机译:电泳显示应用(EPD)中使用的颗粒必须具有许多特定的特性,包括在非水溶剂中的稳定性,高反射率,低多分散性和高电荷密度等。此类颗粒的制造最好在EPD选择的溶剂中进行。这为非水分散聚合方法的研究带来了新的兴趣,该方法可将聚合物颗粒悬浮在低介电常数溶剂中。我们在本文中探索了使用聚二甲基硅氧烷大分子单体稳定十二烷(EPD的典型选择溶剂)中的聚甲基丙烯酸甲酯聚合物颗粒。与传统上使用的基于聚(12-羟基硬脂酸)的稳定剂相反,这种稳定剂对于该方法的意义重大,因为它可以直接溶于反应介质中。此外,本研究作为后续工作的基准,在该工作中,将使用非水分散聚合来生成包裹液滴和固体颜料颗粒的聚合物颗粒。在本文中,研究了大分子单体的分子量和浓度对合成颗粒性能的影响。此外,我们研究了由其他单体作为甲基丙烯酸甲酯的共聚单体和该工艺中唯一的单体合成聚合物颗粒的可能性。在所有实验中还研究了大分子单体浓度的影响。

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