首页> 外文期刊>Journal of Macromolecular Science. Physics >Studies on Comonomer Compositional Distribution of Poly(propylene carbonate-propylene oxide) Copolymer and Its Effect on the Thermal, Mechanical and Oxygen Barrier Properties of Fractions
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Studies on Comonomer Compositional Distribution of Poly(propylene carbonate-propylene oxide) Copolymer and Its Effect on the Thermal, Mechanical and Oxygen Barrier Properties of Fractions

机译:聚碳酸亚丙酯-环氧丙烷共聚物的共聚单体组成分布及其对级分热,机械和氧阻隔性能的影响

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摘要

Poly(propylene carbonate) (PPC) was synthesized by the alternating copolymerization of carbon dioxide and propylene oxide (PO). However, during the polymerization, two by-products tended to produce cyclic propylene carbonate (CPC) and a polyether (PE) segment. The excess PO repeat units (PE segment) can easily insert into the PPC backbone and eventually produce the PPC-PO copolymer. The production of CPC and PE segments affected the increase of polymer chain length. In order to investigate the effects of the existence of PE segments, CPC, and molecular weight of fractions on the physical properties of PPC-PO copolymer, a series of fractions with narrow molecular weight distribution were obtained by repeated fractionation. Based on a solventon-solvent (chloroform-heptane) mixture, an original PPC-PO sample was fractionated into nine fractions with number-average molecular weights (M-n) from 0.34 x 10(5) to 5.56 x 10(5) and PE content from 0.4 to 15 mol%. The M-n of PPC-PO fractions decreased with the increase of PE content in the PPC-PO backbone, and the thermal and mechanical properties of the PPC-PO copolymers were affected by their M-n and PE contents. Furthermore, the lower the PE content, the higher the M-n value. Higher M-n means better tensile and lower oxygen permeability of PPC-PO copolymer.
机译:通过二氧化碳和环氧丙烷(PO)的交替共聚合成聚碳酸丙烯酯(PPC)。然而,在聚合期间,两种副产物倾向于产生环状碳酸亚丙酯(CPC)和聚醚(PE)链段。多余的PO重复单元(PE段)可以轻松插入PPC主链,并最终生成PPC-PO共聚物。 CPC和PE段的生产影响了聚合物链长的增加。为了研究PE链段,CPC和馏分分子量的存在对PPC-PO共聚物物理性能的影响,通过重复分馏获得了一系列分子量分布较窄的馏分。基于溶剂/非溶剂(氯仿/正庚烷)混合物,将原始的PPC-PO样品分馏为九个馏分,其数均分子量(Mn)为0.34 x 10(5)至5.56 x 10(5) )和PE含量为0.4至15 mol%。随着PPC-PO主链中PE含量的增加,PPC-PO馏分的M-n降低,并且PPC-PO共聚物的热和机械性能受其M-n和PE含量的影响。此外,PE含量越低,M-n值越高。 M-n越高,意味着PPC-PO共聚物的拉伸性越好,氧渗透率越低。

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