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Enhanced Oxidation Resistance of Polyphenylene Sulfide Composites Based on Montmorillonite Modified by Benzimidazolium Salt

机译:苯并咪唑鎓盐修饰的蒙脱土基增强聚苯硫醚复合材料的抗氧化性能

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摘要

Organic montmorillonite (MMT) modified by 1,3-dihexadecyl-3H-benzimidazolium bromide (Bz) was used to prepare polyphenylene sulfide (PPS)/MMT composites by melting intercalation. The PPS/MMT composites showed mixed morphology, being comprised of exfoliated and intercalated structures with slight agglomerates. The tensile property of PPS/MMT composites was significantly improved due to the good dispersion of the MMT nanolayers. The test results showed that the tensile strength retention of PPS/MMT composites was higher than that of pure PPS after the oxidation treatment. Moreover, FTIR and XPS analyses were also used to evaluate the oxidation resistance of PPS composites. The FTIR analysis confirmed that adding MMT could better limit the damage of the C–S group and retard the generation of sulfuryl groups (–SO2–) during the oxidation treatment compared to pure PPS. The XPS analysis also suggested that the addition of MMT could reduce the chemical combination of the elements sulfur (S) and oxygen (O) during oxidation treatment. Furthermore, the MMT nanolayers could also promote the transfer of S from a C–S bond into an –SO2– group.
机译:1,3-二十六烷基-3H-苯并咪唑鎓溴化物(Bz)改性的有机蒙脱土(MMT)用于熔融插层制备聚苯硫醚(PPS)/ MMT复合材料。 PPS / MMT复合材料表现出混合的形态,由具有轻微团聚的剥离和插层结构组成。由于MMT纳米层的良好分散性,PPS / MMT复合材料的拉伸性能得到了显着改善。试验结果表明,氧化处理后,PPS / MMT复合材料的拉伸强度保持率高于纯PPS。此外,FTIR和XPS分析还用于评估PPS复合材料的抗氧化性。 FTIR分析证实,与纯PPS相比,添加MMT可以更好地限制C–S基团的损伤并延迟氧化处理过程中硫酰基(–SO2-–)的生成。 XPS分析还表明,MMT的添加可以减少氧化处理过程中元素硫(S)和氧(O)的化学结合。此外,MMT纳米层还可以促进S从C–S键转移至–SO2–基团。

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