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Microporous Bio-membrane Materials Based on High Molecular Weight Polylactide and Low Molecular Weight Poly(ethylene glycol)

机译:基于高分子量聚丙酯和低分子量聚(乙二醇)的微孔生物膜材料

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In this work, microporous membrane biomaterials based on high weight molecular polylactide (PLA) and low molecular weight poly(ethylene glycol) (PEG) using rapid solvent evaporation method were prepared and investigated. The effect of PEG segments added on the thermal and degradation behaviors was studied. According to the results, produced PLA/PEG biomaterial has lower glass transition temperature (T_g) in comparison with neat PLA. It was also found that the degradation rates of the PLA/PEG biomaterials were significantly increased with adding of PEG, which explained by increasing hydrophilic groups. For better porous fixation, CL-blocked polyisocyanate (CL-bp), which was synthesized from reaction of isophorone diisocyanate (IPDI) with dimethylol propionic acid (DMPA) and Trimethylolpropane (TMP) followed by addition of caprolactam (CL), were introduced. The microporous forms were observed by the scanning electron microscope (SEM), which showed the mean diameters of prepared PLA/PEG microporous were around 10μm.
机译:在该作品中,制备并研究了使用快速溶剂蒸发方法的基于高重量分子聚丙烯酰基(PLA)和低分子量聚(乙二醇)和低分子量聚(乙二醇)(PEG)的微孔膜生物材料。研究了在热和降解行为上添加的PEG段的作用。根据结果​​,与整齐的PLA相比,产生的PLA / PEG生物材料具有较低的玻璃化转变温度(T_G)。还发现,通过增加亲水基团解释,可以显着增加PLA / PEG生物材料的降解速率。为了更好的多孔固定,引入了用异佛酮二异氰酸酯(IPDI)的反应合成的CL-封闭的多异氰酸酯(CL-BP)与二甲醇丙酸(DMPA)和三羟甲基丙烷(TMP)合成,然后加入己内酰胺(CL)。通过扫描电子显微镜(SEM)观察微孔形式,其显示出准备的PLA / PEG微孔的平均直径约为10μm。

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