Zhu Jianhua, Zhang Qian, Chen Heping, Zhang Ruiyun, Liu Lifang, Yu Jianyong
College of Textiles, Donghua University, Shanghai 201620, China.
Innovation Center for Textile Science and Technology, Donghua University, Shanghai 201620, China.
ACS Appl Mater Interfaces. 2020 Sep 30;12(39):43634-43645. doi: 10.1021/acsami.0c10933. Epub 2020 Sep 21.
Carbon nanofibers are promising as primary electrode materials for supercapacitors on account of high specific surface area, lightweight, superior physicochemical stability, rich resource, and renewability. However, constructing porous and flexible carbon electrode materials with high capacitance for practical applications remains challenging. Here, heteroatom-decorated hierarchical porous carbon nanofiber composites containing phosphazene [NP(-OCH--CHO), HAPCP], polymethyl methacrylate (PMMA), and graphene oxide (GO) are prepared through one-step electrospinning and subsequent thermal treatment. The alternant phosphorus-nitrogen structure links to the carbon backbones to improve flexibility and electrochemical performance. Inspired by a biomimetic -like structure, the polyaniline (PANI)-decorated porous hybrid electrodes are prepared. The PANI@GO/PMMA/HAPCP/PAN carbon nanofibers (400P@0.1GPHCNFs) covered by PANI nanofibers as a novel free-standing flexible electrode exhibit an excellent electrochemical performance of 680.8 F g at 0.5 A g with a good capacitance retention of 93.5% after 3000 cycles. Moreover, the symmetric flexible all-solid-state supercapacitor assembled by the novel and delicate electrodes exhibits a high energy density of 27.70 W h kg (at a power density of 231.08 W kg) and favorable cycling stability (84.50% retention of the capacitance after 1000 charge-discharge cycles), which indicates that the 400P@0.1GPHCNFs have great potential as a high-performance flexible supercapacitor electrode.
由于具有高比表面积、轻质、优异的物理化学稳定性、资源丰富和可再生性,碳纳米纤维有望成为超级电容器的主要电极材料。然而,构建具有高电容的多孔且柔性的碳电极材料以用于实际应用仍然具有挑战性。在此,通过一步静电纺丝和随后的热处理制备了含有磷腈[NP(-OCH--CHO),HAPCP]、聚甲基丙烯酸甲酯(PMMA)和氧化石墨烯(GO)的杂原子修饰的分级多孔碳纳米纤维复合材料。交替的磷氮结构与碳骨架相连,以提高柔韧性和电化学性能。受类仿生结构的启发,制备了聚苯胺(PANI)修饰的多孔混合电极。被PANI纳米纤维覆盖的PANI@GO/PMMA/HAPCP/PAN碳纳米纤维(400P@0.1GPHCNFs)作为一种新型的独立柔性电极,在0.5 A g时表现出680.8 F g的优异电化学性能,在3000次循环后具有93.5%的良好电容保持率。此外,由这种新颖且精致的电极组装而成的对称柔性全固态超级电容器表现出27.70 W h kg的高能量密度(在功率密度为231.08 W kg时)和良好的循环稳定性(在1000次充放电循环后电容保持率为84.50%),这表明400P@0.1GPHCNFs作为高性能柔性超级电容器电极具有巨大潜力。