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Synthesis of meso-lactide by thermal configurational inversion and depolymerization of poly(L-lactide) and thermal configurational inversion of lactides

机译:通过聚(L-丙交酯)的热构型转化和解聚以及丙交酯的热构型转化合成内消旋丙交酯

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摘要

Meso-lactide (MLA) was synthesized by thermal degradation of poly(L-lactide) [i.e., poly(L-lactic acid) (PLLA)] at relatively high temperatures of 250 and 300 ℃ for thermal degradation periods up to 750 and 360 min, respectively. Maximum MLA yields as high as 30 and 40 mal% were successfully attained at 250 and 300 ℃, respectively, when thermal degradation was continued for 750 and 180 min, respectively. This indicates that the intentional thermal configurational inversion and depolymerization of PLLA and configurational inversion of lactides (LAs) at the higher temperature are favorable for the synthesis of MLA in a short period. The molecular weight and optical purity and tacticity of poly(lactide) [i.e., pol-y(lactic acid) (PLA) decreased and the D-lactyl unit content of PLA increased with an increase in reaction time. The higher MLA fraction for 250 ℃ compared to that for 300 ℃ at the reaction times when PLA samples had similar number-average molecular weights can be ascribed to the lower tacticity or higher racemization at chiral carbons in PLA chains.
机译:内消旋丙交酯(MLA)是通过在250和300℃的较高温度下将聚L-丙交酯[即聚L-乳酸(PLLA)]热降解高达750和360来合成的分钟,分别。当热降解分别持续750分钟和180分钟时,分别在250和300℃分别成功获得了最高30%和40 mal%的MLA产量。这表明在更高的温度下,PLLA的故意热构型转化和解聚以及丙交酯(LAs)的构型转化有利于短时间内合成MLA。随着反应时间的增加,聚丙交酯的分子量,光学纯度和立构规整度降低(即聚乳酸(PLA)),而聚乳酸的D-乳酸单元含量增加。当PLA样品具有相同的数均分子量时,在250℃时的MLA分数高于在300℃时的MLA分数,这可归因于PLA链中手性碳的较低立构规整度或较高的外消旋性。

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