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Hybrid Multiwalled Carbon Nanotubes/Minerals as Potential Fillers for Polymer Composites

机译:杂种多壁碳纳米管/矿物作为聚合物复合材料的潜在填料

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Minerals are always used as filler material in polymer composite application purposely to reduce the price. In order to optimize the use of mineral fillers instead of price reduction, there were several approaches that have been done such as surface treatment, finding suitable coupling agent, and etc. The study on hybridization of minerals with carbon nanotubes (CNT) are rare to be found. CNT has received great attention from researchers due to their superior properties to be used in many applications. Hybridizing CNT with minerals proposes potential fillers for polymer composite. In this study, chemical vapor deposition (CVD) technique was used to synthesize the CNT-minerals hybrid compound. A mixture of CH_4/N_2 was used as the carbon source and nickel as the metal catalyst for the growth of CNT hybrid compound. Three different types of minerals were used namely talc, muscovite and CaCO_3 are used to synthesize the MWCNT-talc, MWCNT muscovite and MWCNT-CaCO_3 hybrid compound. In short, the process involved precipitation of mineral filler with nickel salt. The process was followed by calcinations and reduction of the catalyst, and methane decomposition. The produced hybrid compounds were then analyzed.
机译:矿物始终用作聚合物复合材料应用中的填充材料,以减少价格。为了优化使用矿物填料而不是降价,已经进行了几种方法,例如表面处理,找到合适的偶联剂等。含碳纳米管(CNT)的矿物质杂交的研究很少见被发现。由于许多应用中使用的优越属性,CNT受到研究人员的重视。用矿物杂交CNT提出了用于聚合物复合材料的潜在填料。在该研究中,化学气相沉积(CVD)技术用于合成CNT-矿物杂化化合物。 CH_4 / N_2的混合物用作碳源和镍作为金属催化剂,用于CNT杂化化合物的生长。使用了三种不同类型的矿物质,即滑石,Muscovite和Caco_3用于合成MWCNT-TALC,MWCNT Muscovite和MWCNT-CaCO_3杂种化合物。简而言之,该过程涉及矿物填料与镍盐的沉淀。然后煅烧和还原催化剂和甲烷分解的过程。然后分析产生的杂化化合物。

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