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Polyurethane acrylate microgel synthesized by emulsion polymerization using unsaturated self-emulsified polymer

机译:用不饱和自乳化聚合物乳液聚合合成聚氨酯丙烯酸酯微凝胶

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摘要

Polyurethane(PU)acrylate microgels were obtained by emulsion polymerization of self-emulsified PU acrylate terminated by 2-hydroxyethyl methacrylate without any extra emul-sifier and crosslinker.Moreover,the PU acrylate was also used as stabilizer and crosslinker to synthesize poly(methyl methacrylate)(PMMA)-PU composite microgels via emulsion polymerization,which provided a new method to synthesize PU microgels and their composite microgels.The kinetics of microgel synthesis was studied by gel permeation chromatography.The dynamic rheological behaviors indicated that a crosslinked structure was formed.The frequency dependency of the loss tangent and complex viscosities showed strong relationships with the microgel structure.Those microgels with rigid PMMA core showed higher ability to slide than the soft PU acrylate microgel,which had influence on the changing of loss tangent with frequency.All the microgels swollen in tetrahydrofuran exhibited high viscosities and strong shear-thinning behaviors.As a sort of flexible microgel,the PU microgel was able to form a coherent film at room temperature,which was distinct from hard microgels.
机译:聚氨酯(PU)丙烯酸酯微凝胶是通过在不使用任何额外的乳化剂和交联剂的情况下,将甲基丙烯酸2-羟乙酯封端的自乳化PU丙烯酸酯乳液聚合而制得的。此外,PU丙烯酸酯还用作稳定剂和交联剂来合成聚甲基丙烯酸甲酯(PMMA)-PU复合微凝胶的乳液聚合,为合成PU微凝胶及其复合微凝胶提供了一种新的方法。通过凝胶渗透色谱法研究了微凝胶的合成动力学,动态流变行为表明形成了交联结构。损耗角正切和复杂粘度的频率相关性与微凝胶结构密切相关。那些具有刚性PMMA核心的微凝胶比软质PU丙烯酸酯微凝胶具有更高的滑动能力,这对损耗角正切随频率的变化有影响。在四氢呋喃中溶胀的微凝胶显示出高粘度和强剪切力行为。作为一种柔性微凝胶,PU微凝胶能够在室温下形成粘结膜,这与硬质微凝胶不同。

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