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Poly(ionic liquid) latexes prepared by dispersion polymerization of ionic liquid monomers

机译:通过离子液体单体的分散聚合制备的聚(离子液体)胶乳

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In this contribution, we report the facile preparation of vinylimidazolium-typed poly(ionic liquid) (PIL) latexes and nanoparticles via dispersion polymerization of ionic liquid monomers in aqueous solutions. A homologous series of vinylimidazolium-typed ionic liquid monomers with different alkyl tail length (C8-C18) were synthesized via quaternization of 1-vinylimidazole with corresponding n-alkyl bromides. Dispersion polymerization of these monomers was conducted at a monomer concentration of 50 g/L in aqueous solution at 70 ° without addition of further stabilizers. For ionic liquid monomers with sufficiently long alkyl chains (≥C12), PILs nanoparticles of 20-40 nm in diameter were found, which were self-stabilizing in aqueous media. In the same procedure, preparation of cross-linked PIL nanoparticles was performed in the presence of 10 mol % of divinylimidazolium-based cross-linker. The as-synthesized cross-linked PIL nanoparticles could be transferred into organic solvents, such as polar DMF, and nonpolar toluene after anion exchange with lithium bis(trifluoromethylsulfonyl)imide. This dispersion polymerization requires no dispersing agent and potentially enables a large scale synthesis of PIL nanoparticles in both aqueous and organic solutions. The application spectrum of this unique type of organic nanoparticles is expectedly broad; e.g., the particles are useful as powerful binders and dispersants for coatings and as colloidal templates.
机译:在这项贡献中,我们报告了通过离子液体单体在水溶液中的分散聚合,可以轻松制备乙烯基咪唑型的聚(离子液体)(PIL)胶乳和纳米颗粒。通过1-乙烯基咪唑与相应的正烷基溴化物的季铵化反应,合成了具有不同烷基尾长(C8-C18)的一系列乙烯基咪唑鎓型离子液体单体的同源物。这些单体的分散聚合反应是在70°C的水溶液中以50 g / L的单体浓度进行的,无需添加其他稳定剂。对于具有足够长的烷基链(≥C12)的离子液体单体,发现了直径为20-40 nm的PILs纳米颗粒,它们在水性介质中是自稳定的。在相同的步骤中,在10 mol%的基于二乙烯基咪唑基的交联剂的存在下进行交联的PIL纳米颗粒的制备。与双(三氟甲基磺酰基)酰亚胺锂进行阴离子交换后,可以将合成后的交联PIL纳米粒子转移到有机溶剂中,例如极性DMF和非极性甲苯。这种分散聚合不需要分散剂,并且潜在地使得能够在水溶液和有机溶液中大规模合成PIL纳米颗粒。预期这种独特类型的有机纳米粒子的应用范围很广。例如,该颗粒可用作涂料的强力粘合剂和分散剂以及用作胶体模板。

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