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离子液体改性多壁碳纳米管-丁苯橡胶复合材料的静态和动态力学特性:纳米级增强机制的理论视角

Static and Dynamic Mechanical Characteristics of Ionic Liquid Modified MWCNT-SBR Composites: Theoretical Perspectives for the Nanoscale Reinforcement Mechanism.

作者信息

Abraham Jiji, Thomas Jince, Kalarikkal Nandakumar, George Soney C, Thomas Sabu

机构信息

International and Inter University Centre for Nanoscience and Nanotechnology, Mahatma Gandhi University , P.D. Hills, Kottayam, Kerala 686560, India.

School of Pure and Applied Physics, Mahatma Gandhi University , Kottayam, Kerala 686560, India.

出版信息

J Phys Chem B. 2018 Feb 1;122(4):1525-1536. doi: 10.1021/acs.jpcb.7b10479. Epub 2018 Jan 22.

Abstract

Well-dispersed, robust, mechanicaly long-term stable functionalized multiwalled carbon nanotube (f-MWCNT)-styrene butadiene rubber (SBR) nanocomposites were fabricated via a melt mixing route with the assistance of ionic liquid as a dispersing agent. The mechanical properties of f-MWCNT/SBR vulcanizates were compared over a range of loadings, and it was found that the network morphology was highly favorable for mechanical performance with enlarged stiffness. A comparative investigation of composite models found that modified Kelly-Tyson theory gave an excellent fit to tensile strength data of the composites considering the effect of the interphase between polymer and f-MWCNT. Dynamic mechanical analysis highlighted the mechanical reinforcement due to the improved filler-polymer interactions which were the consequence of proper dispersion of the nanotubes in the SBR matrix. Effectiveness of filler, entanglement density, and adhesion factor were evaluated to get an in depth understanding of the reinforcing mechanism of modified MWCNT. The amount of polymer chains immobilized by the filler surface computed from dynamic mechanical analysis further supports a substantial boost up in mechanics. The Cole-Cole plot shows an imperfect semicircular curve representing the heterogeneity of the system and moderately worthy filler polymer bonding. The combined results of structural characterizatrion by Raman spectroscopy, cure characteristics, mechanical properties, and scanning and transmission electron microscopy (SEM, TEM) confirm the role of ionic liquid modified MWCNT as a reinforcing agent in the present system.

摘要

通过以离子液体作为分散剂的熔融共混路线制备了分散良好、性能稳定、力学性能长期稳定的功能化多壁碳纳米管(f-MWCNT)-丁苯橡胶(SBR)纳米复合材料。在一系列负载量下比较了f-MWCNT/SBR硫化胶的力学性能,发现其网络形态对提高刚度的力学性能非常有利。对复合模型的比较研究发现,考虑到聚合物与f-MWCNT之间界面的影响,修正的凯利-泰森理论能很好地拟合复合材料的拉伸强度数据。动态力学分析突出了由于纳米管在SBR基体中适当分散而改善的填料-聚合物相互作用所导致的力学增强作用。评估了填料的有效性、缠结密度和粘附因子,以深入了解改性MWCNT的增强机理。通过动态力学分析计算出的被填料表面固定的聚合物链数量进一步支持了力学性能的显著提高。科尔-科尔图显示了一条不完美的半圆形曲线,代表了体系的非均质性和适度的填料-聚合物键合。拉曼光谱、硫化特性、力学性能以及扫描和透射电子显微镜(SEM、TEM)的结构表征综合结果证实了离子液体改性MWCNT在本体系中作为增强剂的作用。

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