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Anchoring mesoporous Fe3O4 nanospheres onto N-doped carbon nanotubes toward high-performance composite electrodes for supercapacitors

机译:将介孔Fe3O4纳米纳米载入高效复合电极的N掺杂碳纳米管上,用于超级电容器

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摘要

Fe-based oxide electrodes for practical applications in supercapacitors (SCs) suffer from low conductivity and poor structural stability. To settle these issues, we report on the design and synthesis of Fe3O4/carbon nanocomposites via firmly anchoring mesoporous Fe3O4 nanospheres onto N-doped carbon nanotubes (N-CNTs) via C-O-Fe bonds. Mesoporous Fe3O4 nanospheres are featured by rich electroactive sites and short ion diffusion pathways. The N-CNTs, on the other hand, serve as the scaffolds, which not only provide conducive networks but also suppress the accumulation between mesoporous Fe3O4 nanospheres as well as alleviate volume changes during charge/discharge cycles. Accordingly, the constructed Fe3O4/N-CNTs nanocomposite electrode demonstrates improved specific capacity values of up to 314 C g(-1) at 1 A g(-1), with 92% retention of the initial capacity after 5000 cycles at 10 A g(-1). In addition, the assembled Fe3O4/N-CNTs//active carbon (AC) asymmetric supercapacitor (ASC) device possesses an energy density of 25.3 Wh kg(-1), suggesting that the prepared Fe3O4/N-CNTs nanocomposites are promising electrode materials for use in SCs.
机译:用于超级电容器(SCS)中的Fe基氧化物电极,具有低导电性和结构稳定性差。为了解决这些问题,我们通过C-O-Fe键将介孔Fe3O4纳米粘附到N掺杂的碳纳米管(N-CNT)上,报告Fe3O4 /碳纳米复合材料的设计和合成。中孔Fe3O4纳米球浓郁的电活性部位和短离子扩散途径。另一方面,N-CNT用作支架,其不仅提供有利网络,而且还抑制了中孔Fe3O4纳米球之间的积累以及在充电/放电循环期间缓解体积变化。因此,构建的Fe 3 O 4 / N-CNT纳米复合电极在1Ag(-1)下,改善了高达314℃(-1)的改善的比容量值,在5000次下循环后初始容量为92% (-1)。此外,组装的Fe3O4 / N-CNT //活性炭(AC)不对称超电镀(ASC)装置具有25.3WH kg(-1)的能量密度,表明制备的Fe3O4 / n-CNT纳米复合材料是有前途的电极材料用于SCS。

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