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超级电容器电极:泡沫镍是活性材料的合适基底吗?

Supercapacitor Electrodes: Is Nickel Foam the Right Substrate for Active Materials?

作者信息

Dojčinović Milena P, Stojković Simatović Ivana, Nikolić Maria Vesna

机构信息

Institute for Multidisciplinary Research, University of Belgrade, Kneza Višeslava 1, 11030 Belgrade, Serbia.

Faculty of Physical Chemistry, University of Belgrade, Studentski trg 12-16, 11000 Belgrade, Serbia.

出版信息

Materials (Basel). 2024 Mar 11;17(6):1292. doi: 10.3390/ma17061292.

Abstract

Ni foam is an extensively used current collector and substrate in investigations of electrochemically active materials such as supercapacitors and electrocatalysts for oxygen and hydrogen evolution reactions. This material is relatively cheap, porous, and conductive and has a large specific surface area, all of which make it a good substrate. We investigated Ni-Mg ferrites and NiMnO as active materials for electrochemical energy storage. These materials, when loaded on Ni foam, gave promising capacitance values: 172 F/g (at 2 mV/s) for NiMnO in 6 M KOH and 242 F/g (at 2 mV/s) for MgFeO in 3 M KOH. Nevertheless, during the authors' work, many experimental problems occurred. Inconsistencies in the results directed further investigation towards measuring the capacitance of the active materials using GCE and platinum electrodes as substrates to discover if Ni foam was the culprit of the inconsistencies. When non-nickel substrates were used, both NiMnO and MgFeO showed reduced capacitance. Experimental problems associated with the utilization of Ni foam as a substrate for active materials in supercapacitor electrodes are discussed here, combined with other problems already addressed in the scientific literature.

摘要

泡沫镍是一种广泛应用于电化学活性材料研究的集流体和基底,这些材料包括超级电容器以及用于析氧反应和析氢反应的电催化剂。这种材料相对便宜、多孔且具有导电性,并且比表面积大,所有这些特性使其成为一种优良的基底。我们研究了镍镁铁氧体和镍锰氧化物作为电化学储能的活性材料。当将这些材料负载在泡沫镍上时,得到了令人满意的电容值:在6 M氢氧化钾溶液中,镍锰氧化物在2 mV/s时的电容为172 F/g;在3 M氢氧化钾溶液中,镁铁氧体在2 mV/s时的电容为242 F/g。然而,在作者的研究过程中出现了许多实验问题。结果的不一致促使进一步研究使用玻碳电极和铂电极作为基底来测量活性材料的电容,以确定泡沫镍是否是结果不一致的原因。当使用非镍基底时,镍锰氧化物和镁铁氧体的电容均降低。本文讨论了与在超级电容器电极中使用泡沫镍作为活性材料基底相关的实验问题,并结合了科学文献中已经提及的其他问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c8a/10971949/63aacdc50154/materials-17-01292-g001.jpg

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