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Perfluoroalkyl-Functionalized Hyperbranched Polyglycerol as Pore Forming Agents and Supramolecular Hosts in Polymer Microspheres

机译:全氟烷基官能化的超支化聚甘油作为聚合物微球中的孔形成剂和超分子主体

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摘要

Perfluoroalkyl-functionalized, hyperbranched polyglycerols that produce stable microbubbles are integrated into a microfluidic emulsion to create porous microspheres. In a previously-presented work a dendrimer with a perfluorinated shell was used. By replacing this dendrimer core with a hyperbranched core and evaluating different core sizes and degrees of fluorinated shell functionalization, we optimized the process to a more convenient synthesis and higher porosities. The new hyperbranched polyglycerol porogens produced more pores and can be used to prepare microspheres with porosity up to 12% (v/v). The presented preparation forms pores with a perfluoroalkyl-functionalized surface that enables the resulting microspheres to act as supramolecular host systems. The microspheres can incorporate gases into the pores and actives in the polymer matrix, while the perfluoroalkylated pore surface can be used to immobilize perfluoro-tagged molecules onto the pores by fluorous-fluorous interaction.
机译:产生稳定微泡的全氟烷基官能化超支化聚甘油被整合到微流乳液中,形成多孔微球。在先前提出的工作中,使用了具有全氟化壳的树枝状聚合物。通过用超支化核取代该树枝状聚合物核并评估不同的核尺寸和氟化壳功能化程度,我们优化了工艺,使其合成更方便,孔隙率更高。新的超支化聚甘油致孔剂产生了更多的孔,可用于制备孔隙率高达12%(v / v)的微球。提出的制剂形成具有全氟烷基官能化表面的孔,该孔使所得微球能够充当超分子宿主系统。微球可将气体掺入孔中并在聚合物基质中具有活性,而全氟烷基化的孔表面可用于通过氟-氟相互作用将全氟标记分子固定在孔上。

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