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Nanoporous structured submicrometer carbon fibers prepared via solution electrospinning of polymer blends

机译:通过溶液共纺聚合物共混物制备的纳米多孔亚微米碳纤维

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摘要

A facile means for obtaining submicrometer carbon fibers with a nanoporous structure is presented. A mixture of polyacrylonitrile (PAN) and a copolymer of acrylonitrile and methyl methacrylate (poly(AN-co-MMA)) in dimethylformamide was electrospun into submicrometer fibers with a microphase-separated structure. During the followed oxidation process, the copolymer domains were pyrolyzed, resulting in a nanoporous structure that was preserved after carbonization. The microphase-separated structure of the PAN/poly(AN-co-MMA) electrospun fibers, the morphology, and porous structure of both the oxidized and the carbonized fibers were observed with scanning electron microscopy and transmission electron microscopy. The carbon fibers have diameters ranging from several hundred nanometers to about 1 mu m. The nanopores or nanoslits throughout the fiber surface and interior with diameters of several tens of nanometers are interconnected and oriented along the longitudinal axis of the fibers. This unique nanoporous morphology similar to the microphase-separated structure in the PAN/poly(AN-co-MMA) fibers is attributed to the rapid phase separation, solidification, as well as the stretching of the fibers during electrospinning. The pore volume and pore size distribution of the carbonized fibers were investigated by nitrogen adsorption and desorption.
机译:提出了一种用于获得具有纳米孔结构的亚微米碳纤维的简便方法。将聚丙烯腈(PAN)和丙烯腈与甲基丙烯酸甲酯的共聚物(聚(AN-co-MMA))在二甲基甲酰胺中的混合物电纺成具有微相分离结构的亚微米纤维。在随后的氧化过程中,共聚物结构域被热解,从而形成了纳米孔结构,该结构在碳化后得以保留。用扫描电子显微镜和透射电子显微镜观察了PAN /聚(AN-co-MMA)电纺纤维的微相分离结构,氧化纤维和碳化纤维的形态和多孔结构。碳纤维的直径为几百纳米至约1μm。遍及纤维表面和内部的直径为几十纳米的纳米孔或纳米缝隙相互连接并沿纤维的纵轴取向。这种独特的纳米孔形态类似于PAN /聚(AN-co-MMA)纤维中的微相分离结构,这归因于电纺过程中快速的相分离,固化以及纤维的拉伸。通过氮吸附和解吸研究了碳化纤维的孔体积和孔径分布。

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