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Iron-phosphorus-nitrogen functionalized reduced graphene oxide for epoxy resin with reduced fire hazards and improved impact toughness

机译:铁磷 - 氮官能化石墨烯氧化物,用于减少火灾危险和改善冲击韧性

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摘要

Novel iron hexamethylenediaminetetrakis-(methylenephosphonate) (Fe-HDTMP)-reduced graphene oxide (FerGO) hybrids were prepared by in situ immobilization of Fe-HDTMP nanoparticles and the reduction of graphene oxide via a hydrothermal strategy. Fe-rGO modification of epoxy resin (EP) improved mechanical properties, flame retardancy, smoke suppression, and thermal stability by combination with flame retardant elements (i.e. Fe, N, and P) and graphene nanoplatelets. The incorporation of 1% Fe-rGO increased the impact strength and storage modulus of EP by 19.2, and 27.9%, respectively. Additionally, the incorporation of 5% Fe-rGO helped EP/5Fe-rGO achieve UL-94 VO rating with a limiting oxygen index of 30.5%. Compared to untreated EP, the modified EP exhibited 68.2% lower release of total smoke, 54.5% decreased peak CO production rate, 66.3% lower total heat release, and 47.7% reduced peak heat release rate of EP/5Fe-rGO. In addition, the glasstransition temperature of EP/Fe-rGO nanocomposite was maintained at a high level. The improved fire safety performance of EP/2Fe-rGO nanocomposite was due to the catalyzing carbonization effect, the release of inert compounds of Fe-rGO in condensed and gas phases, and the barrier effect of graphene.
机译:通过对Fe-HDTMP纳米颗粒的原位固定和通过水热策略的石墨烯制备,制备新型铁六亚甲基二胺β-(甲基膦酸盐)(Fe-HDTMP)(Fe-HDTMP)(Fe-HDTMP)杂交杂交物。环氧树脂(EP)的Fe-Rgo改性通过与阻燃元件(即Fe,N和P)和石墨烯纳米片组合改善机械性能,阻燃性,烟雾抑制和热稳定性。掺入1%Fe-Rgo的反应率和27.9%的抗冲击强度和储存量度增加。此外,掺入5%Fe-Rgo帮助EP / 5FE-RGO实现了UL-94 VO等级,限制氧指数为30.5%。与未经处理的EP相比,改性EP释放总烟雾的较低68.2%,峰值CO生产率降低54.5%,总热释放率低66.3%,EP / 5FE-RGO的峰值释放率降低47.7%。此外,EP / Fe-Rgo纳米复合材料的胶合温度保持在高水平。 EP / 2Fe-Rgo纳米复合材料的改善的防火性能是由于碳化效应催化,含有氧化效应的惰性化合物在浓缩和气相中的惰性化合物,以及石墨烯的阻挡效应。

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