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首页> 外文期刊>ACS applied materials & interfaces >Functionalized Carbon Nanotubes with Phosphorus- and Nitrogen-Containing Agents: Effective Reinforcer for Thermal, Mechanical, and Flame-Retardant Properties of Polystyrene Nanocomposites
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Functionalized Carbon Nanotubes with Phosphorus- and Nitrogen-Containing Agents: Effective Reinforcer for Thermal, Mechanical, and Flame-Retardant Properties of Polystyrene Nanocomposites

机译:含磷和氮的功能化碳纳米管:聚苯乙烯纳米复合材料的热,机械和阻燃性能的有效增强剂

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摘要

Aminated multiwalled carbon nanotubes (A-MWCNT) were reacted with diphenylphosphinic chloride (DPP-Cl) to prepare the functionalized MWCNT (DPPA-MWCNT). A-MWCNT and DPPA-MWCNT were respectively mixed with polystyrene (PS) to obtain composites through the melt compounding method. SEM observation's demonstrated that the DPPA-MWCNT nanofillers were more uniformly distributed within the PS matrix than A-MWCNT. PS/DPPA-MWCNT showed improved thermal stability, glass transition temperature, and tensile strength in comparison with PS/A-MWCNT, resulting from good dispersion and interfacial interactions between DPPA-MWCNT and PS matrix. The incorporation of DPPA-MWCNT to PS significantly reduced peak heat release rate, smoke production rate, and carbon monoxide and carbon dioxide release in cone calorimeter tests. The enhanced fire-retardant properties should be ascribed to the barrier effect of carbon nanotubes, which could provide enough time for DPPA-MWCNT and its functionalized groups to trap the degrading polymer radicals to catalyze char formation. The char layer served as an efficient insulating barrier to reduce the exposure of polymer matrix to an external heat source as well as retarding the flammable gases from feeding the flame.
机译:使胺化的多壁碳纳米管(A-MWCNT)与二苯基次膦酰氯(DPP-Cl)反应,以制备功能化的MWCNT(DPPA-MWCNT)。将A-MWCNT和DPPA-MWCNT分别与聚苯乙烯(PS)混合,通过熔融混合法获得复合材料。 SEM观察表明,与A-MWCNT相比,DPPA-MWCNT纳米填料在PS基质内分布更均匀。与PS / A-MWCNT相比,PS / DPPA-MWCNT显示出更高的热稳定性,玻璃化转变温度和拉伸强度,这归因于DPPA-MWCNT与PS基质之间的良好分散性和界面相互作用。在锥形量热仪测试中,将DPPA-MWCNT掺入PS显着降低了峰值放热率,烟雾产生率以及一氧化碳和二氧化碳的释放。增强的阻燃性能应归因于碳纳米管的阻隔作用,它可以为DPPA-MWCNT及其官能团提供足够的时间来捕获降解的聚合物基团,以催化炭的形成。炭层充当有效的绝缘屏障,以减少聚合物基体暴露于外部热源,以及阻止可燃气体进入火焰。

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