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首页> 外文期刊>e-Polymers >Effect of FeCl3 on the morphology, wetting behavior, and stabilization/carbonization of polyacrylonitrile nanofibers prepared by electrospinning
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Effect of FeCl3 on the morphology, wetting behavior, and stabilization/carbonization of polyacrylonitrile nanofibers prepared by electrospinning

机译:FeCl3对静电纺丝聚丙烯腈纳米纤维的形貌,润湿行为和稳定/碳化的影响

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Herein we report that the neat polyacrylonitrile (PAN) nanofibers and PAN/FeCl3 composite nanofibers were prepared by the materials-processing technique of electrospinning. The effect of FeCl3 amount on the morphology and wetting behavior of the resulting composite nanofibers were studied by scanning electron microscopy (SEM) and drop shape analysis (DSA), respectively. The SEM images indicated that the diameters of composite nanofibers decreased with increase of FeCl3 amount, and this was probably due to the conductivity increase of spinning solutions. The results acquired from DSA measurement showed that the addition of FeCl3 increased the surface contact angle of water deposited on composite nanofibers, suggesting the higher hydrophobicity and the lower wetting behavior. Additionally, the effect of FeCl3 on stabilization and carbonization of the PAN composite nanofibers were investigated. The structural and morphological evolutions of the stabilized and carbonized nanofibers were studied by Fourier transfer infrared (FTIR) spectra and SEM. The FTIR spectra showed that the presence of FeCl3 in composite nanofibers considerably varied the mechanisms of thermo-chemical reactions during the heat treatments. The SEM images revealed that there were conglutinations of nanofibers after carbonization, while the degree of conglutination for the carbonized PAN composite nanofibers with FeCl3 was higher than that for the carbonized neat PAN nanofibers.
机译:在这里我们报告说,纯聚丙烯腈(PAN)纳米纤维和PAN / FeCl3复合纳米纤维是通过静电纺丝的材料加工技术制备的。分别通过扫描电子显微镜(SEM)和液滴形状分析(DSA)研究了FeCl3量对所得复合纳米纤维的形态和润湿行为的影响。 SEM图像表明,随着FeCl3含量的增加,复合纳米纤维的直径减小,这可能是由于纺丝溶液的电导率增加所致。从DSA测量获得的结果表明,FeCl 3的添加增加了沉积在复合纳米纤维上的水的表面接触角,表明较高的疏水性和较低的润湿行为。此外,研究了FeCl3对PAN复合纳米纤维的稳定性和碳化的影响。通过傅里叶转移红外光谱和扫描电镜研究了稳定和碳化纳米纤维的结构和形态演变。 FTIR光谱表明,复合纳米纤维中FeCl3的存在极大地改变了热处理过程中热化学反应的机理。 SEM图像显示,碳化后的纳米纤维发生了凝集,而含FeCl3的PAN复合纳米纤维的碳化程度高于碳化的PAN纳米纤维。

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