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Thermo-oxidative processes in biodegradable poly(butylene succinate)

机译:可生物降解的聚丁二酸丁二酯中的热氧化过程

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Aliphatic polyesters have acquired significant interest as environmentally friendly thermoplastics for a wide range of applications, and understanding their degradation behaviour has relevance both for processing and end uses. We have investigated the thermal and thermo-oxidative degradation processes occurring in synthetic and commercial poly(butylene succinate) (PBSu). Thermal oxidation was performed in atmospheric air using extremely thin polymer films at 170 ℃ for up to 6 h. The oxidized compounds were analyzed by size exclusion chromatography (SEC), NMR spectroscopy, and Mass Spectrometry (MALDI-TOF MS). A measurable reduction of the molar mass of the polyesters was soon apparent, promoting the formation of PBSu oligomers with different end groups. MALDI mass spectrometry combined with the use of extremely thin polyester films provided a virtual magnifying glass to obtain exhaustive information on the structure of the oxidation products. An α-H abstraction mechanism has been unambiguously ascertained to be the primary step in PBSu oxidation. The oxidized polymer chains originating from the decomposition of the hydroperoxide intermediate by radical rearrangement reactions had not been revealed before. The latter products subsequently undergo chain scission processes, which can be accurately traced from the chemical species identified in our work. Thermal degradation experiments were also performed under nitrogen at 240-260 ℃. The new species identified in the MALDI spectra support a decomposition pathway taking place through a β-hydrogen-transfer mechanism, followed by the production of succinic anhydride from succinic acid end molecules via a back-biting process.
机译:脂肪族聚酯已成为广泛应用的环保热塑性塑料,引起了人们的极大兴趣,并且了解其降解行为对加工和最终用途都具有重要意义。我们已经研究了在合成和商用聚丁二酸丁二酯(PBSu)中发生的热和热氧化降解过程。使用极薄的聚合物薄膜在170℃下在大气中进行热氧化长达6小时。通过尺寸排阻色谱(SEC),NMR光谱和质谱(MALDI-TOF MS)分析了氧化的化合物。聚酯的摩尔质量的可测量降低很快就显而易见了,从而促进了具有不同端基的PBSu低聚物的形成。 MALDI质谱结合极薄的聚酯薄膜的使用提供了虚拟的放大镜,以获取有关氧化产物结构的详尽信息。明确确定α-H提取机理是PBSu氧化的主要步骤。以前从未发现过氢过氧化物中间体通过自由基重排反应分解而产生的氧化聚合物链。后面的产品随后进行断链过程,可以从我们工作中确定的化学物种中准确追溯。还在240-260℃的氮气环境下进行了热降解实验。 MALDI光谱中鉴定出的新物种支持通过β-氢转移机制发生的分解途径,然后通过反咬合过程从琥珀酸末端分子生产琥珀酸酐。

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