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首页> 外文期刊>Polymer international >Assembly of layered double hydroxide on multi-walled carbon nanotubes as reinforcing hybrid nanofiller in thermoplastic polyurethaneitrile butadiene rubber blends
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Assembly of layered double hydroxide on multi-walled carbon nanotubes as reinforcing hybrid nanofiller in thermoplastic polyurethaneitrile butadiene rubber blends

机译:层状双氢氧化物在多壁碳纳米管上的组装,作为热塑性聚氨酯/丁腈橡胶共混物中的增强杂化纳米填料

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摘要

An efficient approach has been applied to assemble MgAl layered double hydroxide onto pristine carbon nanotubes using sodium dodecylsulfate. The assembling process and formation of such hybrid nanostructures were established using X-ray diffraction, Fourier transform infrared spectroscopy, field emission scanning electron microscopy and high-resolution transmission electron microscopy. Subsequently, the hybrid was used as nanofiller in the development of high-performance thermoplastic polyurethane/acrylonitrile butadiene rubber (1:1 w/w) blend nanocomposites. Measurements of mechanical and dynamic mechanical properties show that tensile strength, elongation at break and storage modulus improve significantly by 171%, 1.8 times and 241% in a blend with 0.50 wt% loading of hybrid filler. Thermogravimetric analysis shows that the thermal stability of the blend with 0.50 wt% hybrid filler compared to neat material is maximally improved by 20 degrees C determined at 50% weight loss. Differential scanning calorimetry shows the maximum enhancement in melting temperature (7 degrees C) and crystallization temperature (31 degrees C) due to significant nucleation efficiency of the filler, homogeneous dispersion and strong interfacial interaction between polymermatrix and filler. (C) 2015 Society of Chemical Industry
机译:使用十二烷基硫酸钠将有效的方法应用于将MgAl层状双氢氧化物组装到原始碳纳米管上。利用X射线衍射,傅立叶变换红外光谱,场发射扫描电子显微镜和高分辨率透射电子显微镜确定了这种杂化纳米结构的组装过程和形成。随后,将杂化物用作纳米填料,用于开发高性能热塑性聚氨酯/丙烯腈丁二烯橡胶(1:1 w / w)共混物纳米复合材料。力学性能和动态力学性能的测量结果表明,在掺入0.50 wt%杂化填料的共混物中,拉伸强度,断裂伸长率和储能模量分别显着提高了171%,1.8倍和241%。热重分析表明,与纯材料相比,含0.50 wt%杂化填料的共混物的热稳定性在20%的温度(最大失重50%)下得到最大改善。差示扫描量热法显示,由于填料的显着成核效率,均匀的分散性以及聚合物基体与填料之间的强界面相互作用,熔融温度(7摄氏度)和结晶温度(31摄氏度)最大提高。 (C)2015年化学工业学会

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