Effect of Different Metals Doped in Nickel Oxide Nanomaterials on Electrochemical Capacitive Performance

A. Jadhav, S. L. Jadhav, A. V. Kadam
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引用次数: 3

Abstract

Recently, the various porous nano metal oxides used for the electrochemical energy storage supercapacitor applications. Some researchers focus on the binary as well as ternary metal oxides and more metal oxide complex composite materials used for the supercapacitors. In the review article focused on the effect of different metals doped in a nickel oxide nano material on the electrochemical capacitive performance, discussion on methodologies, charge storage mechanism, latest research articles and prepared nanostructures. Nowadays nickel oxide is developing electrode material for storage of charge due to its higher thermal stability, excellent chemical stability, cost effective materials, higher theoretical values of specific capacitance, naturally rich and environment friendliness material. The various metals doped in NiO and their composite oxides have shown good structural stability, reversible capacity, long cycling stability and have been also studied nano structured electrode materials for electrochemical supercapacitor applications.
不同金属掺杂氧化镍纳米材料对电化学电容性能的影响
近年来,各种多孔纳米金属氧化物被用于电化学储能超级电容器的应用。一些研究人员将二元、三元金属氧化物和更多金属氧化物复合材料用于超级电容器。本文主要介绍了不同金属掺杂在氧化镍纳米材料中对其电化学电容性能的影响,讨论了方法、电荷存储机制、最新研究成果和制备的纳米结构。氧化镍因其具有较高的热稳定性、优异的化学稳定性、性价比高、比电容理论值高、自然资源丰富、环境友好等优点,正成为目前发展中的电荷存储电极材料。掺杂NiO的各种金属及其复合氧化物表现出良好的结构稳定性、可逆能力、长循环稳定性,并被研究用于电化学超级电容器的纳米结构电极材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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