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Preparation and characterization of carbon films prepared from poly(vinyl alcohol) containing metal oxide and nano fibers with iodine pretreatment

机译:含碘的预处理由含金属氧化物的聚乙烯醇和纳米纤维制备的碳膜的制备和表征

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This research focused on the combination of catalyst effect of metal oxide, thermal conductive effect of carbon nano fibers and iodine pretreatment during carbonization of polymer precursor in order to prepare tough carbon films. Poly(vinyl alcohol) (PVA) composites containing metal oxide (Fe_3O_4) and vapor-grown carbon fibers (VGCFs) were prepared by gelation/crystallization method with the freezing/thawing technique. The dry gel films as precursor were pretreated in the atmosphere of vapor iodine, and then heat-treated at 600-1200 deg C. The combined effect of iodine, Fe_3O_4 and VGCF on the carbonization of PVA was analyzed with thermo-gravimetric analysis, X-ray diffraction, and scanning electron microscope in details. Iodine pretreatment for 24 h significantly promoted the dehydration of PVA, and resulted the carbon film with a high crystallinity. Fe_3O_4 as catalyst facilitated the carbonization of PVA at a low temperature of 800-900 deg C. The addition of VGCFs was found to play an important role to prepare tough films by mild carbonization due to its high thermal conductivity. The degree of graphitization in the carbon film depended on the filler contents, pretreatment conditions and carbonization conditions. The graphitization degrees for G- and T-components in the film were investigated on the basis of X-ray diffraction intensity distribution from the (002) plane.
机译:这项研究集中在金属氧化物的催化作用,碳纳米纤维的导热作用和聚合物前驱体碳化过程中的碘预处理相结合,以制备坚韧的碳膜。通过凝胶/结晶法和冷冻/融化技术制备了含有金属氧化物(Fe_3O_4)和气相生长碳纤维(VGCFs)的聚乙烯醇(PVA)复合材料。将干凝胶薄膜作为前体在蒸气碘气氛中进行预处理,然后在600-1200℃下进行热处理。用热重分析法分析了碘,Fe_3O_4和VGCF对PVA碳化的综合作用。射线衍射和扫描电子显微镜的详细信息。碘预处理24 h显着促进了PVA的脱水,并形成了具有高结晶度的碳膜。 Fe_3O_4作为催化剂在800-900℃的低温下促进了PVA的碳化。由于高导热率,VGCF的添加在通过轻度碳化制备坚韧膜中起着重要作用。碳膜中的石墨化程度取决于填料含量,预处理条件和碳化条件。基于(002)面的X射线衍射强度分布,研究了膜中G和T成分的石墨化度。

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