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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Chain conformation, crystallization behavior, electrical and mechanical properties of electrospun polymer-carbon nanotube hybrid nanofibers with different orientations
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Chain conformation, crystallization behavior, electrical and mechanical properties of electrospun polymer-carbon nanotube hybrid nanofibers with different orientations

机译:不同方向的电纺聚合物-碳纳米管杂化纳米纤维的链构象,结晶行为,电学和力学性能

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摘要

An improved electrospinning technique was used to produce poly(ethylene oxide) (PEO) and PEO-multi-walled carbon nanotube (MWCNT) hybrid nanofibers. By this technique, both the orientation of MWCNTs in the electrospun PEO nanofibers and the orientation of electrospun PEO-MWCNT hybrid nanofibers can be controlled. The morphologies of the as-spun PEO-MWCNT hybrid nanofibers and the dispersion and orientation of MWCNTs in the fiber matrix were observed by scanning and transmission electron microscopy. The effect of electrospinning process and the incorporation of MWCNTs on the chain conformation and semicrystalline framework of PEO were examined by Fourier transform infrared spectroscopy, wide-angle X-ray diffraction, and differential scanning calorimetry, and compared with pure PEO and PEO-MWCNT films prepared by casting. Finally, to investigate how the fiber assemblies affect the mechanical and electrical properties of the hybrid materials, tensile testing and impedance analysis were performed on randomly oriented, uniaxially and biaxially oriented PEO-MWCNT hybrid nanofiber mats. The results indicated that both the uniaxially and biaxially oriented assembled hybrid materials have better tensile strength, modulus, and electrical conductivity compared with random nanofibers.
机译:改进的静电纺丝技术用于生产聚环氧乙烷(PEO)和PEO多壁碳纳米管(MWCNT)杂化纳米纤维。通过该技术,可以控制电纺PEO纳米纤维中的MWCNT的取向和电纺PEO-MWCNT杂化纳米纤维的取向。通过扫描和透射电子显微镜观察了初生PEO-MWCNT杂化纳米纤维的形貌以及MWCNT在纤维基质中的分散和取向。通过傅立叶变换红外光谱,广角X射线衍射和差示扫描量热法研究了静电纺丝过程和MWCNT的掺入对PEO链构象和半结晶构架的影响,并与纯PEO和PEO-MWCNT膜进行了比较。通过铸造准备。最后,为了研究纤维组件如何影响杂化材料的机械和电气性能,对随机取向,单轴和双轴取向的PEO-MWCNT杂化纳米纤维垫进行了拉伸测试和阻抗分析。结果表明,与无规纳米纤维相比,单轴取向和双轴取向的组装杂化材料均具有更好的拉伸强度,模量和电导率。

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