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Synthesis of High Molecular Weight Polyester Using in Situ Drying Method and Assessment of Water Vapor and Oxygen Barrier Properties

机译:用原位干燥方法合成高分子量聚酯及水蒸气和氧气阻隔性能评估

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摘要

The preparation of renewable polyesters with good barrier properties is highly desirable for the packaging industry. Herein we report the synthesis of high molecular weight polyesters via an innovative use of an in situ drying agent approach and the barrier properties of the films formed from these polyesters. High number average molecular weight (Mn) semiaromatic polyesters (PEs) were synthesized via alternating ring-opening copolymerization (ROCOP) of phthalic anhydride (PA) and cyclohexene oxide (CHO) using a salen chromium(III) complex in the presence of 4-(dimethylamino)pyridine (DMAP) cocatalyst. The use of a calcium hydride (drying agent) was found to enhance the number Mn of the synthesized PEs, which reached up to 31.2 ku. To test the barrier properties, PE films were prepared by solvent casting approach and their barrier properties were tested in comparison poly(lactic acid) films. The PE films showed significantly improved water vapor and oxygen barrier properties compared to the commercial poly(lactic acid) (PLA) film that suggests the potential use of these PEs in in the food packaging industry.
机译:具有良好的阻隔性能可再生聚酯的制备是用于包装行业高度期望的。在此我们通过原位干燥剂方法的创新使用的,并从这些聚酯形成的膜的阻隔性能报告高分子量聚酯的合成。高的数均分子量(Mn)半芳族聚酯(PES)经使用沙仑铬(III)交替开环共聚的邻苯二甲酸酐(ROCOP)(PA)和氧化环己烯(CHO)中的4-存在复杂的合成(二甲基氨基)吡啶(DMAP)助催化剂。使用氢化钙(干燥剂)的发现,以提高合成的PE的数量的Mn,达到高达31.2ク。要测试的阻隔性能,采用溶剂流延方法制备的PE膜和它们的阻隔性能比较聚(乳酸)的膜进行了测试。的PE薄膜显示出改进的显著水蒸气和氧气阻隔性相比于商业聚这表明在食品包装工业中的潜在用途这些PE的(乳酸)(PLA)膜。

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