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Phosphorylated cellulose propionate derivatives as thermoplastic flame resistant/retardant materials: influence of regioselective phosphorylation on their thermal degradation behaviour

机译:磷酸化丙酸纤维素衍生物作为热塑性阻燃/阻燃材料:区域选择性磷酸化对其热降解行为的影响

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摘要

Cellulose ester derivatives having phosphoryl side-chains were synthesized by phosphorylation of two types of cellulose propionate (CP); the difference between the two CPs was whether the primary hydroxyl group at C6 had been fully propionylated or not. Dimethyl phosphate, dimethyl thiophosphate, diethyl phosphate, or diethyl thiophosphate was introduced into the residual hydroxyl positions of the CPs. Chemical composition of the respective derivatives was characterized by elemental analysis and a combined use of saponification and HPLC quantification of the released propionic acid. Their thermal properties were investigated by DSC and TGA, and an intermediate residue of the pyrolysis was also examined by FT-IR spectroscopy. From the thermal degradation measurements using TGA, the C6-O phosphorylation was found to noticeably prevent the CP derivatives from weight loss in the pyrolysis process under dynamic air, i.e., providing them with a flame-resistance functionality, whereas the C2-O and C3-O phosphorylation did not give rise to such an appreciable resistance effect. A discussion was focused on the difference in pyrolysis mechanism between the phosphorylated CPs. However, most samples of the CP derivatives showed a clear T g considerably lower than the onset temperature of the thermal degradation. Thus we suggest that it is possible to design thermoplastic flame resistant/retardant materials based on cellulose, by controlling the substitution distribution of the phosphoryl and propionyl groups introduced.
机译:通过两种类型的丙酸纤维素(CP)的磷酸化合成具有磷酰基侧链的纤维素酯衍生物。两个CP之间的差异是C6的伯羟基是否已被完全丙酰化。将磷酸二甲酯,硫代磷酸二甲酯,磷酸二乙酯或硫代磷酸二乙酯引入CP的残留羟基位置。通过元素分析以及皂化反应和HPLC定量分析释放的丙酸的组合来表征各个衍生物的化学组成。通过DSC和TGA研究了它们的热性质,并且还通过FT-IR光谱检查了热解的中间残留物。根据使用TGA进行的热降解测量,发现C6-O磷酸化可显着防止CP衍生物在动态空气下的热解过程中失重,即为它们提供阻燃功能,而C2-O和C3 -O磷酸化没有引起这种明显的抗性作用。讨论的重点是磷酸化CP之间的热解机理差异。但是,大多数CP衍生物样品的净T g明显低于热降解的起始温度。因此,我们建议可以通过控制引入的磷酰基和丙酰基的取代分布来设计基于纤维素的热塑性阻燃/阻燃材料。

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  • 作者

    Aoki Dan; Nishio Yoshiyuki;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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