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Benzothiazole Sulfide Compatibilized Polypropylene/halloysite Nanotubes Composites

机译:苯并噻唑硫化物相容的聚丙烯/卤石纳米管复合材料

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摘要

Clay-philic benzothiazole sulfide, capable of donating electrons, is grafted onto polypropylene (PP) backbones when N-cyclohexyl-2-benzothiazole sulfonamide (CBS), a commonly used accelerator in the tire industry, is included in the processing of PP/halloysite nanotubes (HNTs) composites. CBS decomposes at elevated temperature and yields benzothiazole sulfide radicals, which react with the PP polymeric free radicals generated during the processing of the composites. On the other hand, the benzothiazole group of CBS is reactive to HNTs via electron transferring. The compatibilization between HNTs and PP is thus realized via interfacial grafting and electron transferring mechanism. The interfacial interactions in the compatibilized systems were fully characterized. Compared with the control sample, the dispersion of HNTs and the interfacial bonding are enhanced substantially in the compatibilized composites. The significantly improved mechanical properties and thermal properties of benzothiazole sulfide compatibilized PP/HNTs composites are correlated to the enhanced interfacial property. The present work demonstrates a novel interfacial design via interfacial grafting/electron transferring for the compatibilization of PP/clay composites.
机译:当轮胎工业中常用的促进剂N-环己基-2-苯并噻唑磺酰胺(CBS)被包括在PP /半铁矿的加工过程中时,能够给电子的亲粘土苯并噻唑硫化物被接枝到聚丙烯(PP)骨架上。纳米管(HNT)复合材料。 CBS在高温下分解,并生成苯并噻唑硫化物自由基,该自由基与复合材料加工过程中产生的PP聚合自由基反应。另一方面,CBS的苯并噻唑基团通过电子转移与HNT发生反应。因此,HNTs和PP之间的相容性是通过界面接枝和电子转移机制实现的。充分表征了相容体系中的界面相互作用。与对照样品相比,在相容的复合材料中,HNT的分散性和界面结合得到了显着增强。苯并噻唑硫化物相容的PP / HNTs复合材料的机械性能和热性能的显着改善与界面性能的提高相关。目前的工作证明了通过界面接枝/电子转移来实现PP /粘土复合材料增容的新型界面设计。

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