铁氧体作为超级电容器电极的应用

Ankur Soam
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引用次数: 7

摘要

除了磁性外,铁氧体还被认为是下一代储能装置的有效电极。本章将介绍尖晶石铁氧体MnFe2O4、CoFe2O4、ZnFe2O4和NiFe2O4在超级电容器中的应用。在铁氧体中,电荷的储存源于电极/电解质界面上快速可逆的表面氧化还原反应。特别是具有高比电容、宽工作电位范围、低合成成本和地球上可用性的电极材料是制造超级电容器的理想材料。具有混合氧化态的铁氧体已被证明是超级电容器中很有前途的电极。本章综述了铁氧体基纳米复合材料的不同合成方法及其应用于超级电容器的电化学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of Ferrites as Electrodes for Supercapacitor
Apart from the magnetic properties, ferrites have been considered as efficient electrodes for next generation energy storage devices. This chapter will include applications of spinel ferrites such as MnFe2O4, CoFe2O4, ZnFe2O4 and NiFe2O4 in supercapacitor. In ferrites, the charge storage arises from the fast-reversible surface redox reactions at the electrode/electrolyte interface. In particular, the electrode material with high specific capacitance, wide range of operating potential, low synthesis cost and its availability on the earth are highly desirable to fabricate a supercapacitor. Ferrites with mixed oxidation states have proved as promising electrodes in supercapacitors. In this chapter, we summarize the different synthesis methods of ferrites based nanocomposites and their electrochemical properties for supercapacitor application.
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