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Effect of Functionalization on the Crystallization Behavior of MWNT-PBT Nanocomposites

机译:官能化对MWNT-PBT纳米复合材料结晶行为的影响

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There is tremendous interest in using low loadings of multiwalled carbon nanotubes (MWNTs) to enhance the multifunctional properties of polymers, with functionalization often pursued to increase the dispersion and effective reinforcement of MWNTs within the polymer. In our interest to understand the effect of MWNT functionalization on Poly (butylene terephthalate) (PBT) crystallization kinetics, morphology and mechanical properties, nanocomposites were fabricated with both as-received and carboxyl group (-COOH) functionalized MWNTs. Initial results indicate as-received and functionalized nanotubes alter the crystallization temperature and crystal size for quiescent samples. In addition, isothermal crystallization studies using an Advanced Rheometric Expansion System (ARES) show that the addition of MWNTs increases the rate of PBT crystallization. However, functionalization was found to decrease the rate of nanocomposite crystallization as compared to nanocomposites samples prepared using pristine MWNTs, suggesting that nanotube functionalization weakens the nucleation effect observed in the nanocomposite samples. These results suggest that semicrystalline polymer nanocomposite crystallization kinetics and morphology can be significantly influenced by nanoparticle functionalization and chemistry. Further study of how these changes impact the rheological and multifunctional properties of semicrystalline nanocomposite systems are ongoing.
机译:使用多壁碳纳米管(MWNT)的低负荷有巨大的兴趣,以增强聚合物的多功能性质,经常追求的官能化以增加聚合物中MWNT的分散体和有效增强。我们有兴趣了解MWNT官能化对聚(丁二醇酯)(PBT)结晶动力学,形态学和机械性能的影响,用反应和羧基(-COOH)官能化MWNT制备纳米复合材料。初始结果表示接收和官能化的纳米管改变静止样品的结晶温度和晶体尺寸。此外,使用先进的流变率膨胀系统(ARES)的等温结晶研究表明,添加MWNT增加了PBT结晶的速率。然而,与使用原始MWNT制备的纳米复合材料样品相比,发现官能化降低纳米复合材料结晶的速率,表明纳米管官能化削弱纳米复合材料样品中观察到的成核效果。这些结果表明,半结晶聚合物纳米复合材料结晶动力学和形态受纳米颗粒官能化和化学的显着影响。进一步研究这些变化如何影响半结晶纳米复合材料系统的流变和多功能性质正在进行。

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