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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Influence of decomposition temperature of aromatic sulfonic acid catalysts on the molecular weight and thermal stability of poly( l-lactic acid) prepared by melt/solid state polycondenstaion
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Influence of decomposition temperature of aromatic sulfonic acid catalysts on the molecular weight and thermal stability of poly( l-lactic acid) prepared by melt/solid state polycondenstaion

机译:芳香族磺酸催化剂对聚( L - 乳酸)的分子量和热稳定性的影响对熔融/固态多碳纤维组成的分子量和热稳定性

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摘要

Melt/solid polycondensation (MP/SSP) of poly(l-lactic acid) (PLLA) was conducted by using several aromatic sulfonic acids as the catalysts. It was clarified that the increase in molecular weight and the thermal stability of the obtained polymer are correlated with the 5% weight loss temperatures (Td,5%) of the sulfonic acids determined by thermal gravimetric analysis. When 2,5-dimethyl-, 2,4-dimethyl- and 4-methyl-benzenesulfonic acids showingTd,5%around 150?°C were used as the catalysts, PLLA polymers with high molecular weight and excellent thermal stability could be obtained. On the other hand, 2,4,6-trimethylbenzenesulfonic acid showingTd,5%around 100?°C and 4-dodecylbenzenesulfonic acid withTd,5%above 200?°C gave PLLA polymers with remarkably low thermal stability. The residual catalyst involved in the product polymer or SO3generated during the polymerization decreased the thermal stability of the polymer. The oligomeric fractions of the PLLA products were extracted with acetone and analyzed by1H NMR and mass spectra. It was verified that the catalyst had efficiently been removed by thermal annealing while it remained active during the SSP to produce a thermally stable PLLA with high molecular weight.
机译:通过使用几种芳族磺酸作为催化剂来进行聚(L-乳酸)(PLLA)的熔融/固体缩聚(MP / SSP)。阐明了所得聚合物的分子量的增加和热稳定性与通过热重分析测定的5%重量损失温度(Td,5%)的磺酸。当2,5-二甲基,2,4-二甲基 - 和4-甲基苯磺酸showingTd大约150,5%?℃,被用作催化剂,可以得到具有高的分子量和优良的热稳定性PLLA聚合物。另一方面,2,4,6-三甲基苯磺酸表示,5%约100℃和4-十二烷基苯磺酸,5%以上,200℃以上的耐热稳定性显着低。在聚合过程中,参与产物聚合物或SO 3的残留催化剂降低了聚合物的热稳定性。用丙酮萃取PLLA产物的低聚级分,并分析1H NMR和质谱。验证催化剂通过热退火有效地除去了热退火,而在SSP期间保持有效,以产生具有高分子量的热稳定PLLA。

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