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Formulation and polymerization of foamed 1,4-BDDMA-in-water emulsions

机译:发泡1,4-BDDMA - 水乳液的配制和聚合

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摘要

Emulsion and foam templating allow the synthesis of tailor-made polymer foams. A complementary templating route is foamed emulsion templating. The concept is based on the generation of a monomer-in-water emulsion which is subsequently foamed. After polymerization of the foamed emulsion, one obtains open-cell polymer foams with porous pore walls. In the paper at hand, we generated foamed emulsions and synthesized polymer foams which are based on the monomer 1,4-butanediol dimethacrylate (1,4-BDDMA). The main challenge was to find the optimal composition of the emulsion by varying the components systematically. We will discuss that the composition of the monomer-in-water emulsion is key for the stability of the foamed emulsion and thus for the structure of the resulting polymer foam. The final composition of the continuous phase was found to be 65 vol% 1,4-BDDMA, 30 vol% water and 5 vol% glycerol. We foamed and polymerized this emulsion to check the foamed emulsion's suitability as a template for solid polymer foams. We generated a foamed emulsion with a mean bubble diameter of 151 mu m +/- 90 mu m and obtained a highly porous poly(1,4-BDDMA) foam with a pore mean diameter of 366 mu m +/- 91 mu m. Furthermore, the polymer foam has a "sub-porosity" within the pore walls.
机译:乳液和泡沫模板允许合成量身定制的聚合物泡沫。互补的模板途径是泡沫乳液模板。该概念基于产生单体水乳液的产生,随后泡沫。在泡沫乳液聚合后,可以获得具有多孔孔壁的开放细胞聚合物泡沫。在手中的纸张中,我们产生了基于单体1,4-丁二醇二甲基丙烯酸酯(1,4-BDDMA)的泡沫乳液和合成的聚合物泡沫。主要挑战是通过系统地改变组分来找到乳液的最佳组成。我们将讨论单体水乳液的组合物是泡沫乳液稳定性的关键,从而为所得聚合物泡沫的结构进行键。将连续相的最终组成为65体积%1,4-BDDMA,30体积%的水和5体积%的甘油。我们发泡和聚合该乳液以检查发泡乳液作为固体聚合物泡沫的模板。我们产生了平均气泡直径为151μm+/-90μm的发泡乳液,并获得高度多孔的聚(1,4-BDDMA)泡沫,孔平均直径为366μm+/-91μm。此外,聚合物泡沫在孔壁内具有“子孔隙率”。

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  • 来源
    《RSC Advances》 |2020年第15期|共10页
  • 作者单位

    Univ Stuttgart Inst Phys Chem Pfaffenwaldring 55 D-70569 Stuttgart Germany;

    Univ Stuttgart Inst Phys Chem Pfaffenwaldring 55 D-70569 Stuttgart Germany;

    Univ Stuttgart Inst Phys Chem Pfaffenwaldring 55 D-70569 Stuttgart Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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