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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Hierarchical CoMoO4@Co3O4 nanocomposites on an ordered macro-porous electrode plate as a multi-dimensional electrode in high-performance supercapacitors
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Hierarchical CoMoO4@Co3O4 nanocomposites on an ordered macro-porous electrode plate as a multi-dimensional electrode in high-performance supercapacitors

机译:在有序宏观多孔电极板上的分层COMOO4 @ CO3O4纳米复合材料作为高性能超级电容器中的多维电极

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摘要

Nanoscale core-shell CoMoO4@Co3O4 composite materials are fabricated by a multi-step hydrothermal process on the surface and side wall of an ordered macro-porous electrode plate (OMEP) as the active electrode in a high power density storage device. The morphology, formation mechanism of the CoMoO4@Co3O4 nanostructure, and capacitor performance are systematically studied. The CoMoO4@Co3O4/OMEP electrode has a capacity of 7.13 F cm(-2) (1168.0 F g(-1)) at a constant current density of 0.6 A g(-1) and a retention ratio of 81.4% after 5000 cycles. The large specific capacitance and excellent rate capability can be attributed to the unique 3D ordered porous architecture which facilitates electron and ion transport, enlarges the liquid-solid interfacial area, prevents agglomeration of nanomaterials, and boosts the utilization efficiency of the active materials. Reconstruction on the surface of the porous structured substrate enhances the power density and cycling performance at large current densities. Using the CoMoO4@Co3O4/OMEP electrode as the positive electrode and active carbon/nickel foam (AC/NF) as the negative electrode, the electrochemical electrode packaged in a CR2025 battery cell as a miniature hybrid device exhibits stable power characteristics (10 000 cycles with 91.7% retention at a current of 0.1 A). The device produces large instantaneous power that charging it for 10 s and using three devices in series can power four parallel LED arrays at a current of 0.152 A.
机译:纳米级核心壳COMO4 @ CO3O4复合材料通过在有序宏观多孔电极板(OMEP)的表面和侧壁上作为高功率密度存储装置中的有源电极来制造的多步水热过程。系统地研究了CO3O4纳米结构的形态,形成机制,以及电容器性能。 COMO4 @ CO3O4 / OMEP电极的容量为7.13f cm(-2)(1168.0fg(-1)),恒定电流密度为0.6 a g(-1),保持比率为5000次循环后81.4% 。大的特定电容和优异的速率能力可以归因于易于促进电子和离子传输的独特3D有序多孔结构,扩大液体固体界面区域,防止纳米材料的附聚,并提高活性材料的利用效率。多孔结构基板表面上的重建增强了大电流密度的功率密度和循环性能。使用COMO4 @ CO3O4 / OMEP电极作为正极和活性炭/镍泡沫(AC / NF)作为负电极,作为微型混合装置的CR2025电池电池中的电化学电极表现出稳定的功率特性(10 000个循环91.7%的滞留在0.1a的电流下)。该器件产生大型瞬时功率,将其充电10秒,并使用串联的三个设备可以在0.152 A的电流下为四个并联LED阵列提供电源。

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