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Fe substitution in urchin-like NiCo2O4 for energy storage devices

机译:储能装置中类似顽童的NiCo2O4中的铁替代物

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A composite of NiCo _(2? x ) Fe _( x ) O _(4) was designed to investigate the effects of Fe substitution on its energy storage performance. Urchin-like products composed of nanowires were successfully synthesized through the hydrothermal method and calcinations. Scanning electron microscopy (SEM) images revealed that Fe substitution could reduce the diameter of the nanowires and hinder the urchin-like sphere construction. X-ray diffraction (XRD), energy dispersive X-ray mapping (EDS-mapping) and X-ray photoelectron spectroscopy (XPS) revealed the successful Fe substitution for Co. More importantly, the specific capacity could be largely improved from 359 C g ~(?1) (826 F g ~(?1) ) for x = 0 to 523 C g ~(?1) (1188 F g ~(?1) ) for x = 0.3 at 1 A g ~(?1) . Moreover, with x = 0.3, a specific capacity of 788 F g ~(?1) could be maintained as the current density was increased to 20 A g ~(?1) . Asymmetric supercapacitors based on this compound exhibited an energy density of 26.6 W h kg ~(?1) at a power density of 370 W kg ~(?1) .
机译:设计了NiCo _(2?x)Fe _(x)O _(4)的复合材料,以研究Fe替代对其储能性能的影响。通过水热法和煅烧成功地合成了由纳米线组成的类似Urchin的产物。扫描电子显微镜(SEM)图像显示,Fe替代可以减小纳米线的直径并阻碍类似海胆的球形结构。 X射线衍射(XRD),能量色散X射线映射(EDS映射)和X射线光电子能谱(XPS)表明成功地替代了Fe。更重要的是,比容量可以从359 C g大大提高x = 0时的〜(?1)(826 F g〜(?1))到523 C g〜(?1)(x = 0.3时的1188 F g〜(?1))x在1 A g〜(?1 )。此外,在x = 0.3的情况下,随着电流密度增加至20Ag〜(Δ1),可以保持比容量为788Fg〜(Δ1)。基于该化合物的不对称超级电容器在功率密度为370 W kg〜(?1)时显示出26.6 W h kg〜(?1)的能量密度。

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