Shi Congling, Qian Xiaodong, Jing Jingyun, Che Honglei
Beijing Key Lab of MFPTS, China Academy of Safety Science and Technology, Beijing, China.
Front Chem. 2021 Feb 10;8:627642. doi: 10.3389/fchem.2020.627642. eCollection 2020.
DOPO and silicon containing agents modified multiwalled carbon nanotubes (MCNTs) were synthesized through sol-gel process and MCNTs are introduced into polystyrene (PS) through polymerization. TEM observations and FTIR results of MCNTs demonstrated that the MCNT nanofillers were coated with the organic/inorganic flame retardant compound. Moreover, the TEM results of the composites indicate that MCNTs dispersed in polystyrene PS matrix uniformly due to the modification. The PS/MCNTs composites showed improved thermal stability as well as flame retardant properties in comparison with PS/CNTs composites, which are due to the good dispersion of MCNT in the PS matrix. MCNTs in the PS matrix can also reduce the peak heat release rate, total heat release and improve the smoke suppression performance. The improved flame retardant properties are attributed to the char reinforcing effect of CNTs, which can provide enough time for MCNTs and organic/inorganic compound to trap the degradation of polymer chains and catalyze the formation of char. The char layers can not only serve as an efficient insulating barrier to reduce the exposure of PS matrix to heat source but also retard the releasing of combustible gas.
通过溶胶 - 凝胶法合成了含DOPO和硅的试剂改性多壁碳纳米管(MCNT),并通过聚合将MCNT引入聚苯乙烯(PS)中。MCNT的透射电子显微镜(TEM)观察结果和傅里叶变换红外光谱(FTIR)结果表明,MCNT纳米填料被有机/无机阻燃化合物包覆。此外,复合材料的TEM结果表明,由于改性,MCNT在聚苯乙烯PS基体中均匀分散。与PS/CNT复合材料相比,PS/MCNT复合材料表现出更好的热稳定性和阻燃性能,这归因于MCNT在PS基体中的良好分散。PS基体中的MCNT还可以降低热释放峰值速率、总热释放量并提高抑烟性能。改进的阻燃性能归因于CNT的炭增强效应,它可以为MCNT和有机/无机化合物提供足够的时间来捕获聚合物链的降解并催化炭的形成。炭层不仅可以作为有效的隔热屏障,减少PS基体与热源的接触,还可以延缓可燃气体的释放。