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SiO2 doped carbon nanofiber by electrospinning process

机译:SiO2通过静电纺丝过程掺杂碳纳米纤维

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Carbon nanomaterials are emerging multifunctional one-dimensional nanomaterials for advanced composites. Because they have large surface area, high strength, high elastic modulus, relatively low density, good thermal and electrical properties. Carbon nanofibers (CNFs) are one of the most important members of carbon nanomaterials. CNFs can be derived from some polymers by electrospinning process. Electrospinning is a simple fiber production method which uses electric force to draw charged threads of polymer solutions or polymer melts up to fiber diameters in the order of some hundred nanometers. In this study, SiO2 doped CNFs were electrospun from polyacrylonitrile (PAN) solutions in N,N-dimethylformamide (DMF). The inputted voltage and PAN content in the solution were fixed at 20-25 and 30 kV and 8 wt.% in DMF with 8 cm of tip-to collector distance. The PAN/SiO2 nanofiber webs were stabilized by oxidation at 250 °C for 1 h in air and carbonized at 750 °C for 30 min in H2/N2. The resultant diameter distribution and morphologies of the CNFs were evaluated by scanning electron microscope analysis and FibraQuant 1.3 software.
机译:碳纳米材料是用于先进复合材料的多功能一维纳米材料。因为它们具有大的表面积,高强度,高弹性模量,相对低密度,良好的热和电性能。碳纳米纤维(CNFS)是碳纳米材料中最重要的成员之一。 CNF可以通过静电纺丝过程从一些聚合物衍生自一些聚合物。静电纺丝是一种简单的纤维制造方法,它使用电力绘制聚合物溶液的带电螺纹或聚合物的螺纹,大约一百纳米的纤维直径。在该研究中,将SiO 2掺杂CNF在N,N-二甲基甲酰胺(DMF)中的聚丙烯腈(PAN)溶液中的电纺。溶液中的输入电压和锅含量在20-25和30kV和8重量%中固定在DMF中,具有8cm的尖端 - 集电极距离。通过在250℃下氧化在空气中氧化并在750℃下碳化30分钟,在H 2 / N 2下碳化锅/ SiO 2纳米纤维网。通过扫描电子显微镜分析和纤维化1.3软件评估CNF的所得直径分布和形态。

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