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首页> 外文期刊>Biomacromolecules >Effects of Residual Zinc Compounds and Chain-End Structure on Thermal Degradation of Poly(epsilon-caprolactone)
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Effects of Residual Zinc Compounds and Chain-End Structure on Thermal Degradation of Poly(epsilon-caprolactone)

机译:残留锌化合物和链端结构对聚ε-己内酯热降解的影响

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Effects of chain-end structure and residual metal compounds on thermal degradation of poly(epsilon-caprolactone)(PCL)were investigated by means of thermogravimetric and pyrolysis-gas chromatograph mass spectrometric analyses.Four types of PCL samples with different chain-end structures(a-carboxylic acid-omicron-hydroxyl-PCL,alpha-dodecyl ester-omicron-hydroxyl-PCL,a-carboxylic acid-omicron-acetyl-PCL,and a-dodecyl ester-omicron-acetyl-PCL)were prepared by ring-opening polymerization of epsilon-caprolactone in the presence of zinc-based catalyst and by subsequent acetylation reaction of polymers with acetic anhydride.PCL samples with different zinc contents were obtained by washing with acetic acid in chloroform solution of polymer.Thermal degradation behaviors of these PCL samples with different chain-end structures were examined under both isothermal and nonisothermal conditions.From both the isothermal and nonisothermal experiments,the thermal degradation of PCL samples containing high amounts of residual zinc compounds from synthesis process revealed the selective unzipping depolymerization step below 300 degC producing epsilon-caprolactone exclusively.In contrast,zinc-free PCL samples were stable at temperatures below 300 degC,and the thermal degradation occurred only at temperatures above 300 degC regardless of the chain-end structure.From ~1H NMR analysis of the residual molecules after isothermal degradation of zinc-free PCL,it was confirmed that the omicron-chain-end of residual molecules was 5-hexenoic acid unit.However,the cyclic monomer and oligomers were detected as the volatile products of zinc-free PCL samples.These results suggest that the dominant reaction of thermal degradation for PCL above 300degC is a competition between the random chain scission via cis elimination reaction and the cyclic rupture via intramolecular transesterification of PCL molecules.
机译:通过热重和热解-气相色谱质谱法研究了链端结构和残余金属化合物对聚ε-己内酯(PCL)热降解的影响。四种类型的链端结构不同的PCL样品(通过环-制备α-羧酸-微米-羟基-PCL,α-十二烷基酯-微米-羟基-PCL,α-羧酸-微米-乙酰基-PCL和α-十二烷基酯-微米-乙酰基-PCL)。在锌基催化剂存在下,通过ε-己内酯的开环聚合反应以及随后聚合物与乙酸酐的乙酰化反应,通过在聚合物的氯仿溶液中用乙酸洗涤来获得具有不同锌含量的PCL样品,这些PCL的热降解行为在等温和非等温条件下检查了具有不同链端结构的样品。从等温和非等温实验中,含有大量合成过程中残留的锌化合物显示了在300℃以下选择性解链解聚的步骤,仅生成ε-己内酯。相反,无锌PCL样品在300℃以下的温度下稳定,仅在300℃以上的温度才发生热降解。 degC不论链端结构如何。从无锌PCL等温降解后残留分子的〜1H NMR分析中,可以确认残留分子的Omicron链端为5-己酸。环状单体和低聚物是无锌PCL样品的挥发性产物,这些结果表明300°C以上PCL的热降解的主要反应是通过顺式消除反应进行的随机链断裂与通过分子内酯交换作用进行的循环断裂之间的竞争PCL分子。

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