Cationic polymerization of styrene using iron-containing ionic liquid catalysts in an aqueous dispersed medium

IF 1 4区 化学 Q4 POLYMER SCIENCE Polimeros-ciencia E Tecnologia Pub Date : 2021-05-21 DOI:10.1590/0104-1428.04620
G. V. Dutra, Weslany Silvério Neto, P. H. Araújo, C. Sayer, Brenno Amaro da Silveira Neto, Fabricio Machado
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引用次数: 2

Abstract

Abstract This work aims to study the cationic miniemulsion polymerization of styrene catalyzed by iron-containing imidazolium-based ionic liquids. The polystyrenes had very high number-average molar mass around 1300 kg mol-1 at 85 °C, molar-mass dispersity close to 2.0 and glass transition temperature higher than 102 °C with average particle diameter that remained practically unchanged during the reaction, indicating that the monomer droplets correspond to the polymerization locus. First-order kinetics up to a limit conversion, along with the increase in molar mass as the temperature decreases, styrene polymerization at low temperatures and catalyst inability to polymerize monomers that react exclusively via free radical and/or anionic polymerization, indicate the cationic nature of polymerization. 1H-NMR and 13C-NMR spectra suggested the formation of polystyrene, allowing for tacticity distribution quantification: 10% isotactic, 20% atactic and 70% syndiotactic configurations. TEM micrographs confirmed the formation of spherical polymer nanoparticles and the presence of catalysts in the polymer matrix.
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用含铁离子液体催化剂在水分散介质中进行苯乙烯阳离子聚合
摘要本工作旨在研究含铁咪唑基离子液体催化苯乙烯的阳离子微乳液聚合。在85℃时,聚苯乙烯的数-平均摩尔质量约为1300 kg mol-1,摩尔-质量分散度接近2.0,玻璃化转变温度高于102℃,平均粒径在反应过程中基本保持不变,表明单体液滴与聚合位点相对应。一级动力学直到极限转化,随着温度降低摩尔质量的增加,苯乙烯在低温下聚合,催化剂不能聚合单体,只能通过自由基和/或阴离子聚合反应,表明聚合的阳离子性质。1H-NMR和13C-NMR谱显示聚苯乙烯的形成,允许战术分布量化:10%等规构型,20%无规构型和70%同规构型。TEM显微照片证实了球形聚合物纳米颗粒的形成和聚合物基体中催化剂的存在。
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来源期刊
Polimeros-ciencia E Tecnologia
Polimeros-ciencia E Tecnologia 化学-高分子科学
CiteScore
2.00
自引率
0.00%
发文量
14
审稿时长
6 months
期刊介绍: Polímeros is a quarterly publication of the Associação Brasileira de Polímeros - ABPol (Brazilian Polymer Association), which publishes Review Articles, Original Articles and Short Communications, disclosing advances in the knowledge of Polymer Science and Technology.
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