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Effect of wet oxidation on the dispersion and electrical properties of Multi-walled Carbon Nanotubes /Epoxy Nanocomposites

机译:湿式氧化对多壁碳纳米管/环氧纳米复合材料分散性和电学性能的影响

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摘要

Carbon nanotubes (CNTs) have excellent mechanical and electrical properties than conventional materials (carbon black and glass fibers), and are promising candidates as reinforcement material for composites. Formation of electrical conductive with effective dispersion of filler remains a main challenge in the polymer matrix and fillers in order to achieve a good electrical conductivity. Therefore, one of the solutions is to functionalize through wet oxidation of the CNTs besides adding surfactants or assisted liquids. Functionalization of CNTs involves the generation of chemical moieties on their surface that can improve the solubility and processibility. Any functionalization that is undertaken must preferably not influence other key properties such as strength and electrical conductivity of the nano-composite. The matrix used in this study was epoxy and reinforcement filler was multi-walled carbon nanotubes (MWCNTs). MWCNTs were treated with sulfuric acid and nitric acid at 3:1 (v/v) ratio. The present of functional groups on CNTS were investigated using Fourier Transform Infrared (FT-IR). Different weight percentages of MWCNTs (functionalized and as produced) / epoxy composite were prepared. The electrical conductivity of functionalized MWCNTs nanocomposites and as produced MWCNTs nanocomposites were measured by the four point probe. Dispersion state of CNTs in epoxy matrix was observed on fractured surface by scanning electron microscopic. Functionalized CNTs gave better dispersion stability in solvents than non-functionalized CNTs. As expected, non- functionalized CNTs (as produced MWCNTs) are not dispersed at all in all the solvents. However, functionalized CNTs composites give low electrical conductivity. Defects from acid treatment are assumed will damage the original chirality of as produced CNTs and give unbalance polarization on the CNTs, which are the reasons for no formation of conductive pathway networks of acid treated CNTs under electric field.
机译:碳纳米管(CNT)具有比常规材料(炭黑和玻璃纤维)优异的机械和电气性能,并且有望用作复合材料的增强材料。具有填料的有效分散的导电剂的形成仍然是聚合物基质和填料中的主要挑战,以实现良好的导电性。因此,解决方案之一是除了添加表面活性剂或辅助液体外,还要通过碳纳米管的湿式氧化功能化。 CNT的功能化涉及在其表面上产生化学部分,该化学部分可以改善溶解性和可加工性。进行的任何官能化优选必须不影响其他关键特性,例如纳米复合材料的强度和电导率。本研究中使用的基质是环氧树脂,增强填料是多壁碳纳米管(MWCNT)。用硫酸和硝酸以3:1(v / v)的比例处理MWCNT。使用傅立叶变换红外(FT-IR)研究了CNTS上官能团的存在。制备了不同重量百分比的MWCNT(官能化的和生产的)/环氧复合材料。通过四点探针测量官能化的MWCNTs纳米复合材料和所产生的MWCNTs纳米复合材料的电导率。通过扫描电子显微镜观察,CNTs在环氧树脂基体中的分散状态在断裂表面上。官能化的CNT与非官能化的CNT相比,在溶剂中的分散稳定性更好。如预期的那样,未官能化的CNT(作为生产的MWCNT)根本不会分散在所有溶剂中。但是,官能化的CNTs复合材料的电导率较低。假定酸处理的缺陷会破坏所生成的CNT的原始手性,并在CNT上产生不平衡极化,这是在电场下未形成酸处理的CNT的导电通路网络的原因。

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