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Multi-role p-styrene sulfonate assisted electrochemical preparation of functionalized graphene nanosheets for improving fire safety and mechanical property of polystyrene composites

机译:多角色对苯乙烯磺酸盐辅助电化学制备功能化石墨烯纳米片以提高聚苯乙烯复合材料的防火安全性和机械性能

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摘要

Polystyrene sulfonate functionalized graphene nanosheets (PSS@GNS) with high quality (I-D/I-G = 0.17) were fabricated through electrochemical exfoliation of bulk graphite followed by simple free radical polymerization in water solution, which is a promising strategy for mass production of polymer functionalized graphene. P-styrene sulfonate anions were used to intercalate into the bulk graphite under voltage and also as monomers of the macromolecule modification agents for the exfoliated graphene nanosheets. Besides, benzene rings and carbon double bonds are considered to be able to capture hydroxyl free radicals which produce defects on graphene sheets during electrochemical exfoliation process, thus improve the quality of the exfoliated graphene nanosheets. Then the graphene nanosheets were incorporated into polystyrene (PS) through a solution blending method to reduce the fire hazards and improve mechanical properties of PS resin. According to the results of cone calorimeter, the introduction of functionalized graphene nanosheets into PS reduces heat release rate (decreased by 40%), total heat release (decreased by 35%) and increases the amount of char residues. The flame retardant improvement is attributed to the barrier effect of well-dispersed graphene nanosheets, limiting the mass transfer of the volatile compounds and forming char layers which blocked polymers from heat and oxygen. Meanwhile, the introduction of PSS@GNS into PS also contributed to increase its strength and elongation rate thanks to the pristine properties of graphene nanosheets and their interfacial interaction with the PS matrix.
机译:通过本体石墨的电化学剥落,然后在水溶液中进行简单的自由基聚合,制备了高质量(ID / IG = 0.17)的聚苯乙烯磺酸盐官能化石墨烯纳米片(PSS @ GNS),这是批量生产聚合物官能化石墨烯的一种有前途的策略。对苯乙烯磺酸根阴离子用于在电压下插入块状石墨中,还用作片状石墨烯纳米片的大分子改性剂的单体。此外,苯环和碳双键被认为能够捕获在电化学剥落过程中在石墨烯片上产生缺陷的羟基自由基,从而提高了剥落的石墨烯纳米片的质量。然后将石墨烯纳米片通过溶液共混方法掺入聚苯乙烯(PS)中,以减少火灾隐患并改善PS树脂的机械性能。根据锥形量热仪的结果,将官能化的石墨烯纳米片引入PS会降低放热率(降低40%),总放热(降低35%)并增加残炭量。阻燃剂的改进归因于分散良好的石墨烯纳米片的阻隔作用,限制了挥发性化合物的传质并形成了使聚合物免受热和氧影响的炭层。同时,由于石墨烯纳米片的原始特性及其与PS基质的界面相互作用,将PSS @ GNS引入PS也有助于提高其强度和伸长率。

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