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Novel graft copolymers from mechanistically-designed seeded emulsion polymerization

机译:机械设计的种子乳液聚合制得的新型接枝共聚物

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While natural rubber and natural rubber latex (NRL) have technical and environmental advantages, there are limitations in applications, which could be extended by creating a graft copolymer in the latex with artificial monomer(s) through the double bond on the cis-polyisoprene. Previous attempts to create such grafting through second-stage polymerization with the NRL as seed did not give uniform morphology of the resulting polymer, presumably because of insufficient grafting. This is overcome by combining two strategies: (a) the second-stage monomer system includes one or more components that are extremely water-insoluble, thereby avoiding secondary particle formation and subsequent imbibement, and (b) the second-stage monomer is chosen to have free-radical chemistry that can readily form graft sites with polyisoprene which undergo further propagation. One monomer that satisfies these criteria is lauryl acrylate, and indeed uniform morphology is observed in using this monomer polymerized with NRL as seed under appropriate conditions. [References: 19]
机译:虽然天然橡胶和天然橡胶胶乳(NRL)具有技术和环境优势,但在应用方面存在局限性,可以通过在乳胶中与顺式聚异戊二烯上的双键与人工单体形成接枝共聚物来扩大应用范围。先前尝试通过第二阶段聚合以NRL作为种子进行此类接枝的尝试并未给出所得聚合物的均匀形态,这可能是由于接枝不充分所致。通过结合两种策略可以克服这一点:(a)第二阶段单体体系包含一种或多种极不溶于水的组分,从而避免了二次颗粒的形成和随后的吸收,并且(b)选择第二阶段单体以具有自由基化学性质,可以轻易地与聚异戊二烯形成接枝位点,并进一步传播。满足这些标准的一种单体是丙烯酸月桂酯,并且在将这种与NRL聚合的单体作为种子在适当条件下观察到确实观察到均匀的形态。 [参考:19]

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