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Synthesis of Poly(Lactic Acid-co-Glycolic Acid) Copolymers with High Glycolide Ratio by Ring-Opening Polymerisation

机译:开环聚合用高乙酰胺比合成聚(乳酸 - 共乙醇酸)共聚物

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摘要

The rise in demand for biodegradable plastic packaging with high barrier properties has spurred interest in poly(lactic acid-co-glycolic acid) (PLGA) copolymers with a relatively high glycolide content. In this work, we examined how reaction conditions affect the synthesis of PLGA25 (L:G 25:75) through the ring-opening polymerisation of d-l-lactide (L) and glycolide (G), using tin 2-ethylhexanoate (Sn(Oct)2) as the catalyst and 1-dodecanol as the initiator. The effects of varying the initiator concentration, catalyst concentration, reaction time, and temperature on the molecular weight, monomer conversion, and thermal properties of PLGA25 were investigated. Increasing the reaction temperature from 130 to 205 °C significantly reduced the time required for high monomer conversions but caused greater polymer discolouration. Whilst increasing the [M]:[C] from 6500:1 to 50,000:1 reduced polymer discolouration, it also resulted in longer reaction times and higher reaction temperatures being required to achieve high conversions. High Mn and Mw values of 136,000 and 399,000 g mol−1 were achieved when polymerisations were performed in the solid state at 150 °C using low initiator concentrations. These copolymers were analysed using high temperature SEC at 80 °C, employing DMSO instead of HFIP as the eluent.
机译:对具有高屏障性质的可生物降解塑料包装的需求的增加对聚(乳酸 - 共乙醇酸)(PLGA)共聚物具有相对较高的乙醇含量的兴趣。在这项工作中,我们研究了使用锡2-乙基己酸酯(SN(OCT)的DL-Lactide(L)和乙酰胺(G)的开环聚合来影响PLGA25(L:G 25:75)的反应条件如何影响PLGA25(L:G 25:75)的合成)2)作为催化剂和1-十二烷醇作为引发剂。研究了改变引发剂浓度,催化剂浓度,反应时间和温度对分子量,单体转化和PLGGA25的热性质的影响。将反应温度从130至205℃增加显着降低了高单体转化所需的时间,但导致更大的聚合物变色。同时增加[M]:[C]从6500:1至50,000:1降低的聚合物变色,它也导致较长的反应时间和更高的反应温度来实现高转化。使用低引发剂浓度在150℃下在150℃下在固态进行聚合时,实现了136,000和399,000g mol-1的高Mn和Mw值。使用高温秒在80℃下进行分析这些共聚物,用DMSO而不是氢填料作为洗脱剂。

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