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Effect of an organically modified nanoclay on low-surface-energy materials of polybenzoxazine

机译:有机改性的纳米粘土对聚苯并恶嗪低表面能材料的影响

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摘要

Novel low surface free energy materials of polybenzoxazine/organically modified silicate nanocomposites have been prepared and characterized. The CPC (cetylpyridinium chloride)/ claylo%/poly(3-phenyl-3,4-dihydro-2H-1,3-benzoxazine) (PP-a) material possesses an extremely low surface free energy (12.7 Mj. M-2) after 4 h curing at 200'C, which is even lower than that of poly(tetrafluoroethylene) (22.0 Mj. M-2) calculated on the basis of the threeliquid geometric method. X-Ray photoelectron spectroscopy (XPS) shows a higher silicon content on the surface of the nanocomposites than for an average composition, which implies that the clay is more preferentially enriched on the outermost layer. In addition, the glass transition temperature (Tg) of the polybenzoxazine (PP-a) in the nanocomposite is 22.6'C higher and its thermal decomposition temperature is also 31.5'C higher than the pure PP-a. This finding provides a simple way to prepare low surface energy and high thermal stability materials.
机译:制备并表征了聚苯并恶嗪/有机改性硅酸盐纳米复合材料的新型低表面自由能材料。 CPC(氯化十六烷基吡啶)/粘土%/聚(3-苯基-3,4-二氢-2H-1,3-苯并恶嗪)(PP-a)材料具有极低的表面自由能(12.7 Mj。M-2) )在200'C下固化4小时后,甚至低于根据三液几何方法计算的聚四氟乙烯(22.0 Mj。M-2)。 X射线光电子能谱(XPS)显示,纳米复合材料表面的硅含量比一般成分的硅含量高,这意味着粘土最优先地富集在最外层。另外,纳米复合物中的聚苯并恶嗪(PP-a)的玻璃化转变温度(Tg)比纯PP-a高22.6℃,并且其热分解温度也高31.5℃。该发现提供了制备低表面能和高热稳定性材料的简单方法。

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