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首页> 外文期刊>Journal of Colloid and Interface Science >Rational construction of triangle-like nickel-cobalt bimetallic metal-organic framework nanosheets arrays as battery-type electrodes for hybrid supercapacitors
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Rational construction of triangle-like nickel-cobalt bimetallic metal-organic framework nanosheets arrays as battery-type electrodes for hybrid supercapacitors

机译:三角形镍 - 钴双金属金属 - 有机框架纳米片阵列的合理构建作为混合超级电容器的电池型电极

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Reasonably designing self-supported metal-organic framework (MOF) nanoarrays is profound for applications in energy storage and conversion. Herein, we construct a triangle-like nickel-cobalt bimetallic metal-organic framework nanosheet array on nickel foam (NiCo-MOF/NF) via facile one-step hydrothermal reaction, served as battery-like electrode material for hybrid supercapacitors. By adjusting the molar ratio of Ni and Co, the optimal NiCo-MOF/NF with Ni/Co = 3:2 (3-2 NiCo-MOF/NF) produces an impressive specific capacity of 1003.5 C/g (2230 F/g) at 1 A/g, surpassing most of the previously reported MOF based electrode materials. The superior electrochemical performances may be related to their 3D well-aligned MOF nanosheets arrays, which provides enlarged electroactive areas. Meanwhile, the tight junction of electrode materials and conductive substrate nickel foam (NF) can guarantee their sufficient electric contact, contributing to fast electron transfer from electrodes to conductive substrates. Finally, a hybrid supercapacitor fabricated by the 3-2 NiCo-MOF/NF against active carbon (AC) delivers an advantageous energy density of 34.3 Wh/kg at a power density of 375 W/kg. These results certificate that such bimetallic NiCo-MOF nanosheets arrays hold great potential as novel electrode materials for hybrid supercapacitors. (C) 2019 Elsevier Inc. All rights reserved.
机译:合理地设计自支撑的金属 - 有机框架(MOF)纳米阵列是深度储能和转化中的应用。在此,我们通过容易的单步水热反应构建在镍泡沫(Nico-Mof / NF)上的三角形镍 - 钴双金属 - 有机框架纳米片阵列,用作杂交超级电容器的电池状电极材料。通过调节Ni和Co的摩尔比,具有Ni / Co = 3:2(3-2 Nico-Mof / NF)的最佳Nico-MOF / NF产生令人印象深刻的1003.5c / g(2230 f / g )在1 A / g,超过了大多数先前报告的基于MOF的电极材料。卓越的电化学性能可以与其3D对齐的MOF纳米阵列阵列相关,其提供放大的电活性区域。同时,电极材料和导电基板镍泡沫(NF)的紧密结可以保证其充分的电接触,有助于从电极到导电基板的快速电子转移。最后,通过抗活性炭(AC)的3-2个Nico-MOF / NF制造的混合超级电容器可在375w / kg的功率密度下提供34.3WH / kg的有利能量密度。这些结果证明,这种双金属NiCO-MOF纳米电池阵列作为混合超级电容器的新型电极材料具有很大的潜力。 (c)2019 Elsevier Inc.保留所有权利。

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