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首页> 外文期刊>Macromolecular Research >Magnesium Aluminium Layered Double Hydroxide Assisted Dispersion of Multiwalled Carbon Nanotubes for Enhanced Reinforcement of Ethylene-co-Vinyl Acetate Matrix
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Magnesium Aluminium Layered Double Hydroxide Assisted Dispersion of Multiwalled Carbon Nanotubes for Enhanced Reinforcement of Ethylene-co-Vinyl Acetate Matrix

机译:多壁碳纳米管用于增强乙烯 - 共乙酸乙烯酯基质的增强镁层双氢氧化物双氢氧化物辅助分散

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Successful utilization of natural anionic clays like montmorillonite and hectorite for the homogeneous dispersion of multiwalled carbon nanotubes (MWCNTs) in ethylene-co-vinyl acetate (EVA), motivated us to investigate the role of magnesium aluminium layered double hydroxide (MgAl-LDH) in a similar role. MWCNT/MgAl-LDH 3D hybrid filler (HML) was prepared from the unmodified constituents in 1:1 wt. ratio by simple dry grinding method. The dispersion of this hybrid filler with extraordinary stability was subsequently used in the preparation of EVA/HML nanocomposites by solution intercalation method. Analysis shows MWCNTs to be homogeneously dispersed in the polymer matrix in presence of LDH layers. Reinforcing efficiency of HML in EVA matrix was evaluated through detailed studies of the nanocomposites. Mechanical, thermal and dielectric properties of neat EVA are substantially improved with HML content. Maximum improvement observed in tensile strength, elongation at break and toughness are 182%, 87%, and 300% respectively at 4 wt% HML. However, best dielectric response with similar to 400 and similar to 89 times enhancement in AC conductivity and dielectric constant are observed 1 wt% HML content. Comparison of HML with previously reported MWCNT/montmorillonite (MMT) and MWCNT/hectorite 3D hybrid fillers confirms superior reinforcing efficiency of the former. Improvements in properties are attributed to homogeneous dispersion of fillers and improved polymer-filler interaction on account of synergy between MWCNTs and LDH.
机译:成功利用像蒙脱石和锂均匀分散的自然阴离子粘土,用于乙烯 - 乙烯基乙酸乙烯酯(EVA)的多壁碳纳米管(MWCNT)均匀分散,激励我们研究镁层层双氢氧化物(MGAL-LDH)的作用类似的角色。 MWCNT / MGAL-LDH 3D杂交填料(HML)由未修饰的成分中1:1重量加入。通过简单的干式研磨方法的比例。随后使用溶液嵌入方法在制备EVA / HML纳米复合材料的情况下使用具有非凡稳定性的该杂交填料的分散。分析显示在LDH层存在下在聚合物基质中均匀分散的MWCNT。通过对纳米复合材料的详细研究评估EVA基质中HML的增强效率。用HML含量基本上改善了整齐EVA的机械,热和介电性能。在拉伸强度下观察到的最大改善,断裂和韧性的伸长率分别为4wt%的HML分别为182%,87%和300%。然而,相似于400的最佳介电响应和类似于交流电导率和介电常数的89倍的增强,被检测为1wt%HML含量。 HML与先前报道的MWCNT / MONTMORILLONITE(MMT)和MWCNT /斜率3D杂交填料的比较证实了前者的卓越的增强效率。性质的改善归因于填料的均匀分散,并根据MWCNT和LDH之间的协同作用而改善的聚合物 - 填充物相互作用。

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