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镍纳米颗粒@镍-钼氮化物纳米棒阵列:用于高面积电容混合超级电容器的新型三维网络分级结构。

Ni nanoparticles@Ni-Mo nitride nanorod arrays: a novel 3D-network hierarchical structure for high areal capacitance hybrid supercapacitors.

机构信息

School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, P.R. China.

出版信息

Nanoscale. 2017 Nov 23;9(45):18032-18041. doi: 10.1039/c7nr05560a.

DOI:10.1039/c7nr05560a
PMID:29131214
Abstract

Because of the advanced nature of their high power density, fast charge/discharge time, excellent cycling stability, and safety, supercapacitors have attracted intensive attention for large-scale applications. Nevertheless, one of the obstacles for their further development is their low energy density caused by sluggish redox reaction kinetics, low electroactive electrode materials, and/or high internal resistance. Here, we develop a facile and simple nitridation process to successfully synthesize hierarchical Ni nanoparticle decorated NiMoN nanorod arrays on a nickel foam (Ni-Mo-N NRA/NF) from its NiMoO precursor, which delivers a high areal capacity of 2446 mC cm at a current density of 2 mA cm and shows outstanding cycling stability. The superior performance of the Ni-Mo-N NRA/NF can be ascribed to the metallic conductive nature of the Ni-Mo nitride, the fast surface redox reactions for the electrolyte ions and electrode materials, and the low contacted resistance between the active materials and the current collectors. Furthermore, a hybrid supercapacitor (HSC) is assembled using the Ni-Mo-N NRA/NF as the positive electrode and reduced graphene oxide (RGO) as the negative electrode. The optimized HSC exhibits excellent electrochemical performance with a high energy density of 40.9 W h kg at a power density of 773 W kg and a retention of 80.1% specific capacitance after 6000 cycles. These results indicate that the Ni-Mo-N NRA/NF have a promising potential for use in high-performance supercapacitors.

摘要

由于其高功率密度、快速充放电时间、优异的循环稳定性和安全性,超级电容器因其在大规模应用中的吸引力而受到了广泛关注。然而,其进一步发展的障碍之一是由于缓慢的氧化还原反应动力学、低电活性电极材料和/或高内阻导致的低能量密度。在这里,我们开发了一种简便的氮化工艺,成功地从 NiMoO 前驱体制备了在泡沫镍上具有分层 Ni 纳米颗粒修饰的 NiMoN 纳米棒阵列(Ni-Mo-N NRA/NF),其在 2 mA cm 的电流密度下具有 2446 mC cm 的高面容量,并表现出出色的循环稳定性。Ni-Mo-N NRA/NF 的优异性能可归因于 Ni-Mo 氮化物的金属导电性、电解质离子和电极材料的快速表面氧化还原反应以及活性材料和集电器之间的低接触电阻。此外,使用 Ni-Mo-N NRA/NF 作为正极和还原氧化石墨烯(RGO)作为负极组装了混合超级电容器(HSC)。优化后的 HSC 在 773 W kg 的功率密度下表现出出色的电化学性能,能量密度为 40.9 W h kg,经过 6000 次循环后,比电容保留率为 80.1%。这些结果表明,Ni-Mo-N NRA/NF 在高性能超级电容器中有很好的应用潜力。

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