模板聚合制备环氧功能性多孔POSS微粒

Güneş Kibar
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引用次数: 0

摘要

以单分散的2µm聚(GMA)种子胶乳颗粒为模板,采用模板聚合法分两步合成了具有环氧功能的多孔多面体低聚硅氧烷(POSS)微粒子。第一步,将模板化的聚合物乳胶在乳液介质中膨胀,得到微米级的多孔POSS颗粒。第二步,将疏水单体甲基丙烯酸甲酯(poss)、环氧功能单体甲基丙烯酸甘油酯(GMA)、交联剂GDMA和热模拟剂扩散到膨胀模板中,在乳液介质中进行自由基聚合。聚POSS-co- gdma -co- gma微粒子以多分散形式存在,这是由于POSS硅笼芯的高分子量给扩散步骤带来了困难。然而;经离心后分离得到粒径约为5.8±0.4µm的单分散复合微颗粒。通过SEM、TGA、FTIR和XRD等手段对该球形细孔杂化结构进行了形貌、热性能、化学成分和晶型表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Epoxy Functional Porous POSS Microparticles via Templated Polymerization
Epoxy-functional porous polyhedral oligomeric silsesquioxane (POSS) microparticles were synthesized by templated polymerization in two-steps by using monodisperse 2µm poly(GMA) seed latex particles as a template. In the first step, templated polymer latex was swollen in emulsion medium to obtain micron size porous POSS particles. In the second step, the hydrophobic monomers metharcyl-POSS, epoxy-functional monomer glycidyl methacrylate (GMA), the crosslinking agent GDMA and the thermal imitator diffused into the swollen template in emulsion medium for free-radical polymerization. The resultant poly(POSS-co-GDMA-co-GMA) microparticles were obtained in polydisperse form due to the high molecular weight of the silica cage core of POSS created difficulty in the diffusion step. However; monodisperse composite microparticles were obtained around 5.8 ± 0.4µm in size via centrifugal post-separation. The spherical fine porous hybrid structure was fully characterized as morphological, thermal, chemical composition, and crystalline form by SEM, TGA, FTIR, and XRD respectively.
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