首页> 外文期刊>Journal of Polymers and the Environment >Biodegradable Polymers From 5-hydroxylevulinic Acid:1. Synthesis And Characterization Of Poly(5-hydroxylevulinic Acid)
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Biodegradable Polymers From 5-hydroxylevulinic Acid:1. Synthesis And Characterization Of Poly(5-hydroxylevulinic Acid)

机译:由5-羟基乙酰丙酸可生物降解的聚合物:1。聚(5-羟基乙酰丙酸)的合成与表征

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摘要

As an attempt to synthesize new biodegradable polymers from renewable cellulose resources, melt poly-condensation of 5-hydroxylevulinic acid (5-HLA) was reported for the first time. The resulting product, poly (5-hydroxylevulinic acid) (PHLA), was synthesized and characterized with GPC, FTIR, ~1H NMR and DSC. The in vitro degradation behaviors in phosphate-buffered saline (PBS) and in deionized water (DW) were also examined. The molecular weight of PHLA is not high (several 1,000s), but it possesses unordinary high glass transition temperature (as high as 120 ℃). This is very different from existing aliphatic polyesters that usually have T_gs lower than 60 ℃. The high T_g is attributed to the formation of inter- and/or intramolecular hydrogen bonds due to a characteristic keto-enol tautomerism equilibrium in the polymer structure. PHLA readily degraded hydrolytically in aqueous media.
机译:作为从可再生纤维素资源合成新的可生物降解聚合物的尝试,首次报道了5-羟基乙酰丙酸(5-HLA)的熔融缩聚反应。合成了产物聚(5-羟基乙酰丙酸)(PHLA),并通过GPC,FTIR,〜1H NMR和DSC对其进行了表征。还检查了在磷酸盐缓冲盐水(PBS)和去离子水(DW)中的体外降解行为。 PHLA的分子量不高(几个1000s),但具有很高的玻璃化转变温度(高达120℃)。这与通常具有低于60℃的T_gs的现有脂族聚酯不同。高T_g归因于聚合物结构中特征性的酮-烯醇互变异构平衡,形成了分子间和/或分子内氢键。 PHLA在水性介质中易于水解降解。

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