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Thermal decomposition and flame retardant behaviour of SiO_2-phenolic nanocomposite

机译:SiO_2-酚醛纳米复合材料的热分解和阻燃性能

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The present investigation describes the preparation of nano-SiO_2-phenolic novolac resin nanocomposite through in situ polymerisation. CP MAS ~(13)C NMR and FTIR analyses indicate the formation of chemical linkage between the inorganic and organic components. The decomposition temperature of the nanocomposite is ~70℃ higher than the neat phenolic resin. The char content of the nanocomposite at any intermediate temperature is higher than that of neat resin. The limiting oxygen index value of the neat resin is 38 whereas it is 43 for the nanocomposite. So, the nanocomposite possesses excellent flame retardant property. Both the nanocomposite and the neat resin were isothermally pyrolysed and the products were separated and identified using GC-MS. The decomposition product analysis shows a difference in the decomposition product distribution. This variation is discussed in the light of the proposed structure for the SiO_2-phenolic nanocomposite.
机译:本研究描述了通过原位聚合制备纳米SiO_2-酚醛清漆树脂纳米复合材料。 CP MAS〜(13)C NMR和FTIR分析表明,无机和有机成分之间形成化学键。纳米复合材料的分解温度比纯酚醛树脂高约70℃。在任何中间温度下,纳米复合材料的炭含量都高于纯树脂。纯树脂的极限氧指数值为38,而纳米复合材料的极限氧指数值为43。因此,纳米复合材料具有优异的阻燃性能。等温热解纳米复合材料和纯树脂,并使用GC-MS分离和鉴定产物。分解产物分析显示了分解产物分布的差异。根据提出的SiO_2-酚类纳米复合材料的结构讨论了这种变化。

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