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A high-performance hybrid supercapacitor with NiO derived NiO@Ni-MOF composite electrodes

机译:具有NIO衍生NiO @ Ni-MOF复合电极的高性能杂交超级电容器

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Metal-organic framework (MOF) is a class of porous material, which has been gradually applied in supercapacitor fields but remains a significant challenge owing to their intrinsic instability and poor conductivity. Herein, we design a new strategy for synthesizing a well-aligned porous NiO@Ni-MOF/NF cylindrical cage-shape structure derived from NiO self-sacrificed template and precursor. Particularly, this unique construction structure could not only boost the conductivity of the electrode, but also endow the Ni-MOF with a good orientation to promote the transport of electrons and ion in electrochemical energy storage process. The as-prepared NiO@Ni-MOF/NF delivers an amazing specific capacity (1853 C cm(-2) at 1 mA cm(-2) ) superior to NiO/NF (242 C cm(-2)), as well as a relatively low impedance. The hybrid supercapacitor (HSC) is composed of the NiO@Ni-MOF/NF and carbon nanotube (CNT) as the positive and negative electrode, respectively. This HSC exhibits a specific capacitance of 144 F g(-1) at 1 A g(-1). The maximum energy and power densities of this HSC device reach to 39.2 W h kg(-1) and 7000 W kg(-1), respectively, showing good cycling stability with 94% capacity retention over 3000 cycles. This work proposes an innovative strategy for rational preparation well-aligned MOF arrays, which could serve as a promising method in the asymmetric supercapacitor devices field. (C) 2020 Elsevier Ltd. All rights reserved.
机译:金属有机框架(MOF)是一类多孔材料,这已逐渐应用于超级电容器场,但由于其内在的不稳定性和差的导电性仍然是一个重大挑战。在此,我们设计一种新的策略,用于合成衍生自NiO自死模板和前体的Ni-Mof / NF圆柱形笼形结构的良好对齐的多孔NiO @ Ni-Mof / NF圆柱形笼形结构。特别地,这种独特的施工结构不仅可以提高电极的电导率,而且还赋予Ni-MOF具有良好的取向,以促进电子和离子在电化学能量存储过程中的运输。制备的NIO @ NI-MOF / NF可提供优于NIO / NF(242 C CM(-2))的惊人的特定容量(1853 C cm(-2))(242 c cm(-2))作为相对较低的阻抗。杂交超级电容器(HSC)分别由NiO @ Ni-Mof / NF和碳纳米管(CNT)作为正极和负电极组成。该HSC在1A(-1)下表现出144f g(-1)的特定电容。该HSC器件的最大能量和功率密度分别达到39.2WH kg(-1)和7000W kg(-1),显示出良好的循环稳定性,94%容量保持超过3000次循环。这项工作提出了一种合理制备良好对齐的MOF阵列的创新策略,其可以作为非对称超级电容器装置领域的有希望的方法。 (c)2020 elestvier有限公司保留所有权利。

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