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Construction of chain segment structure models, and effects on the initial stage of the thermal degradation of poly(vinyl chloride)

机译:链段结构模型的构建及其对聚氯乙烯热降解初期的影响

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The thermal degradation of poly(vinyl chloride) (PVC) is inevitable during its processing and is directly related to the initial stage of the thermal stability of PVC. This paper focuses on the influence of the segment structures that include a conjugated polyene sequence structure and internal allylic chloride structure on the initial stage of the thermal degradation of PVC. The conjugated polyene sequence structure and internal allylic chloride structure were the structural models successfully constructed via thermal and alkali treatment methods through the long chain of PVC directly. Ultraviolet-visible spectroscopy (UV-Vis) was used to analyze the type and content of the conjugated polyene structure. Nuclear magnetic resonance spectroscopy (1H-NMR) was used to determine the variation trend in the content of internal allylic chlorine structures because of the oxygen-containing structure excluded by Fourier-transform infrared spectrometer (FTIR) characterization. The thermal stability of the treated PVC was also determined through thermogravimetric analysis (TGA). The comparison between the two structural models revealed that the internal allylic chloride structure greatly influenced the initial thermal stability as an initiation point in the PVC chain, thereby leading to thermal instability.
机译:聚氯乙烯(PVC)在加工过程中不可避免地发生热降解,并且直接与PVC热稳定性的初始阶段有关。本文重点研究包括共轭多烯序列结构和内部烯丙基氯结构在内的链段结构对PVC热降解初期的影响。共轭多烯序列结构和内部烯丙基氯化物结构是直接通过PVC的长链通过热处理和碱处理方法成功构建的结构模型。紫外可见光谱法(UV-Vis)用于分析共轭多烯结构的类型和含量。核磁共振波谱( 1 H-NMR)用于确定内部烯丙基氯结构的含量的变化趋势,因为傅里叶-排除了含氧结构变换红外光谱仪(FTIR)表征。还通过热重分析(TGA)确定了处理过的PVC的热稳定性。两种结构模型之间的比较表明,内部烯丙基氯结构极大地影响了初始热稳定性,将其作为PVC链中的起始点,从而导致热不稳定性。

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