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首页> 外文期刊>Journal of Colloid and Interface Science >Hierarchical NiCo2S4@NiCoP core-shell nanocolumn arrays on nickel foam as a binder-free supercapacitor electrode with enhanced electrochemical performance
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Hierarchical NiCo2S4@NiCoP core-shell nanocolumn arrays on nickel foam as a binder-free supercapacitor electrode with enhanced electrochemical performance

机译:分层Nico2S4 @ Nicop Core-Shell纳米柱阵列,镍泡沫作为无粘合剂的超级电容器,具有增强的电化学性能

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摘要

A novel hierarchical core-shell nanocolumn array, with NiCo2S4 hollow nanowire (NiCo2S4 H-NW) as the core and NiCoP nanosheet (NiCoP NS) as the shell, has been directly synthesized on nickel foam (NF) as self-supported, binder-free electrode for high-performance supercapacitors. The morphological characterizations reveal that the diameter of NiCo2S4 H-NW core is similar to 100 nm and the diameter of single NiCo2S4@NiCoP core-shell nanocolumn is similar to 250 nm. Through a series of electrochemical tests and the analysis of charge storage kinetics, hierarchical NiCo2S4@NiCoP/NF electrode presents high areal specific capacitance of 5.98 F/cm(2) at 1 mA/cm(2), outstanding rate capability (70.29% capacitance retention with the current density increased from 1 to 50 mA/cm(2)) and superior cycling stability (92.94% of original capacity is retained after 5000 cycles at 10 mA/cm(2)). The prominent performance of NiCo2S4@NiCoP/NF electrode could be resulted from their unique hierarchical core-shell nanocolumn structure, which could offer abundant active sites near the interface for fast electrochemical reaction, and validly avoid the collapse of internal structure for the stability of whole structure in the repeated electrochemical measurement. The novel NiCo2S4@NiCoP/NF electrode offers a new method for future electrochemical energy storage devices with high-stability. (C) 2018 Elsevier Inc. All rights reserved.
机译:具有NicO2S4中空纳米线(NicO2S4 H-NW)作为核心和Nicop Nahosh(NicoP NS)作为壳的新型等级核心 - 壳阵列阵列已直接在镍泡沫(NF)上以自支撑,粘合剂直接合成用于高性能超级电容器的自由电极。形态学特征揭示了NicO2S4 H-NW核的直径类似于100nm,单个Nico2S4的直径类似于奈博核 - 壳纳米柱的类似于250nm。通过一系列电化学测试和电荷储存动力学的分析,等级NicO2S4 @ NicoP / NF电极在1mA / cm(2),出色的速率能力(70.29%电容70.29%)中呈现为5.98f / cm(2)的高面积特定电容。电流密度的保留从1至50mA / cm(2)增加,循环稳定性(92.94%的原始容量在10mA / cm(2)时保留5000次)。 Nico2S4 @ Nicop / NF电极的突出性能可以由它们独特的层级壳纳米柱结构产生,这可以提供靠近界面附近的丰富活性位点,以便有效地避免内部结构的崩溃,以实现整体的稳定性反复电化学测量中的结构。新型Nico2S4 @ NicoP / NF电极为未来具有高稳定性的未来电化学能量存储装置提供了一种新方法。 (c)2018 Elsevier Inc.保留所有权利。

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