Electrospun Polyimide Nanocomposite Fibers Reinforced with Core−Shell Fe-FeO Nanoparticles

Both pure polyimide (PI) and Fe-FeO nanoparticles reinforced PI nanocomposite fibers with a particle loading of 5, 10, 20, and 30 wt % are produced by electrospinning with optimized operational parameters such as polymer concentration, applied electrical voltage, and tip-to-collector distance. The m...

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Veröffentlicht in:Journal of physical chemistry. C 2010-05, Vol.114 (19), p.8844-8850
Hauptverfasser: Zhu, Jiahua, Wei, Suying, Chen, Xuelong, Karki, Amar B, Rutman, Dan, Young, David P, Guo, Zhanhu
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Sprache:eng
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Zusammenfassung:Both pure polyimide (PI) and Fe-FeO nanoparticles reinforced PI nanocomposite fibers with a particle loading of 5, 10, 20, and 30 wt % are produced by electrospinning with optimized operational parameters such as polymer concentration, applied electrical voltage, and tip-to-collector distance. The morphology of the resulting products is correlated to the corresponding rheological behaviors of the pure PI and Fe-FeO/PI nanocomposite solutions. Thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) reveal an enhanced thermal stability of the nanocomposite fibers after introducing the Fe-FeO nanoparticles. The glass transition temperature (T g) and melting temperature (T m) of the nanocomposite fibers increase by 10−12 and 15−17 °C, respectively, as compared to those of the pure PI fibers. The magnetic properties of the Fe-FeO nanoparticles in the polymer nanocomposite fibers are different from those of the as-received nanoparticles. An increased shell thickness by 7.4% is deduced after the nanoparticles experiencing the high-voltage electrospinning.
ISSN:1932-7447
1932-7455
DOI:10.1021/jp1020033