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Highly porous cobalt oxide-decorated carbon nanofibers fabricated from starch as free-standing electrodes for supercapacitors

机译:由淀粉制成的多孔多孔氧化钴修饰的碳纳米纤维,作为超级电容器的独立式电极

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Hybrid supercapacitor with improved energy density was prepared by electrospinning using biopolymer, and a simple dip-coating method. Through the optimization of the dip-coating time and post-heat treatment process, carbon nanofiber with highly porous structure and Co3O4 particles formed on the surface was successfully fabricated. It was found that Co3O4/C nanofibers dipped for one hour exhibited a highly porous microstructure with a specific surface area of 964 m(2)/g, and this was mainly composed of pores with an average diameter of 2.4 nm. These characteristics contributed to superior electrochemical properties of hybrid nanofibers, among which a 137 F/g specific capacitance was achieved with a very stable cycle life (91% retention after 5,000 cycles). The combination of porous carbon nanofiber derived by optimized calcination process of Co precursor and redox reaction from the Co3O4 provided a synergistic effect for enhanced specific capacitance of the hybrid supercapacitor.
机译:使用生物聚合物通过静电纺丝和简单的浸涂方法制备了具有改善的能量密度的混合超级电容器。通过优化浸涂时间和后热处理工艺,成功地制备了具有高孔隙结构的碳纳米纤维和表面形成的Co3O4颗粒。发现浸入一小时的Co3O4 / C纳米纤维表现出高度多孔的微结构,比表面积为964 m(2)/ g,主要由平均直径为2.4 nm的孔组成。这些特性有助于杂化纳米纤维的优异电化学性能,其中以非常稳定的循环寿命(5,000次循环后保留91%)获得了137 F / g的比电容。通过优化的Co前驱体煅烧过程和Co3O4的氧化还原反应获得的多孔碳纳米纤维的组合,为增强混合超级电容器的比电容提供了协同效应。

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