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Application of pyrolysis-capillary gas chromatography with npd detection in thermal degradation of polyphosphazenes study

机译:热解-毛细管气相色谱-npd检测技术在聚磷腈热降解研究中的应用

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Polyphosphazenes represent a unique class of polymers with a backbone composed of alternating phosphorous and nitrogen atoms.The thermal behaviour and decomposition of a variety of polyphosphazenes depends on the type of side groups present.Especially those that bear aryloxy side groups,possess a high temperature stability as well as excellent flame resistance.Pyrolysis-capillary gas chromatography has been used in a study of three polyphosphazene samples for thermal stabilty characterisation.Degradation products were detected with three single detectors for flame ionisation(FID),nitrogen-phosphorous sensitivity(NPD) and mass spectrometry(MSD)at di?erent pyrolysis temperatures ranging from 300 degree up to 800 degree.The NPD responses for phosphorous or nitrogen fragments of polyphosphazenes have been used for the construction of degradation product schemes and the examination of the thermal stability of the polyphosphazene's backbone. Partial identification of the degradation products present in the gaseous phase was achieved by MSD.The polyphosphazenes thermal degradation conversion rates were at a maximum at 450-500 degree.At various pyrolysis temperatures,the calculated N/P peak area ratio is a function of the degree of polyphosphazene-N=P-chain degradation,and reflective of the nitrogen-phosphorous detector sensitivity.NPD proved to be suitable tool for characterization of polyphospazene thermal stability.
机译:聚磷腈代表一类独特的聚合物,其主链由交替的磷原子和氮原子组成。各种聚磷腈的热行为和分解取决于存在的侧基的类型,特别是带有芳氧基侧基的那些具有高温稳定性。热裂解-毛细管气相色谱法已用于研究三个聚磷腈样品的热稳定性,并使用三个单个检测器检测了降解产物,分别用于火焰离子化(FID),氮磷敏感性(NPD)和在300至800度的不同热解温度下进行质谱分析(MSD)。已将聚磷腈的磷或氮片段的NPD响应用于构建降解产物方案和检查聚磷腈的热稳定性。骨干。通过MSD可以部分鉴定气相中存在的降解产物。聚磷腈的热降解转化率最高为450-500度。在不同的热解温度下,计算出的N / P峰面积比是Md的函数。 NPD的降解程度(N = P链降解),反映了氮磷检测器的灵敏度。NPD被证明是表征聚磷腈热稳定性的合适工具。

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