Electrospun cerium nitrate/polymer composite fibres:synthesis,characterization and fibre-division model  

Electrospun cerium nitrate/polymer composite fibres:synthesis,characterization and fibre-division model

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作  者:李蒙蒙 龙云泽 尹红星 张志明 

机构地区:[1]College of Physics Science,Qingdao University [2]College of Chemistry and Chemical Engineering,Ocean University of China

出  处:《Chinese Physics B》2011年第4期510-517,共8页中国物理B(英文版)

基  金:supported by the Program for New Century Excellent Talents at the University of China (Grant No. NCET-07-0472);the National Natural Science Foundation of China (Grant Nos. 11074138,10910101081 and 10604038)

摘  要:Cerium (III) nitrate/poly(vinylpyrrolidone) (Ce(NO3)3/PVP) composite fibres have been prepared by electrospinning. After calcining the composite fibres in air at 500 ℃, CeO2 nanowires were obtained. The characterizations of the as-spun composite fibres and resultant nanowires have been carried out by a scanning electron microscope (SEM), an infrared spectrometer, an x-ray diffractometer and a fluorescence spectrophotometer. Interestingly, some unusual ribbon-like or twin fibres were observed besides the common fibres with circular or elliptic cross sections. We developed a fibre-division model resulting from Coulomb repulsion and solvent vaporization to interpret the formation of the ribbons or twin fibres, which has been confirmed by the SEM studies. Our results also indicate that the formation of the ribbons or twin fibres is less dependent on operation voltage and work distance.Cerium (III) nitrate/poly(vinylpyrrolidone) (Ce(NO3)3/PVP) composite fibres have been prepared by electrospinning. After calcining the composite fibres in air at 500 ℃, CeO2 nanowires were obtained. The characterizations of the as-spun composite fibres and resultant nanowires have been carried out by a scanning electron microscope (SEM), an infrared spectrometer, an x-ray diffractometer and a fluorescence spectrophotometer. Interestingly, some unusual ribbon-like or twin fibres were observed besides the common fibres with circular or elliptic cross sections. We developed a fibre-division model resulting from Coulomb repulsion and solvent vaporization to interpret the formation of the ribbons or twin fibres, which has been confirmed by the SEM studies. Our results also indicate that the formation of the ribbons or twin fibres is less dependent on operation voltage and work distance.

关 键 词:CERIUM nanowires ELECTROSPINNING fibre-division model 

分 类 号:TB332[一般工业技术—材料科学与工程]

 

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