Studying the impact of metal oxide in the development of hybrid capacitor

Gaurav Shekhar, Mukesh Rai, Niraj Mahulkar, P. B. Karandikar
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引用次数: 3

Abstract

Hybrid capacitor composed of two electrodes immersed in an electrolytic solution with a separator located between the electrodes. Electrode materials store charge while electrolyte provides conductive medium for them. In hybrid capacitor, material for both electrodes are different from each other i.e. electrodes are asymmetric in nature. Due to asymmetric nature, hybrid capacitor results in higher value of energy density and specific capacitance. The value of capacitance, energy density and internal resistance are affected by the proportion of metal oxide. Metal oxides like manganese dioxide, stannic oxide, ruthenium dioxide and vanadium pentaoxide in combination with activated carbon is used in this research work for the development of hybrid capacitor. Selected metal oxide in combination with activated carbon is then varied in various proportions and its impacts are studied accordingly.
研究了金属氧化物对混合电容器发展的影响
混合电容器由两个电极浸在电解溶液中组成,电极之间有一个分离器。电极材料储存电荷,电解液为电极材料提供导电介质。在混合电容器中,两个电极的材料彼此不同,即电极本质上是不对称的。由于其不对称特性,混合电容器具有更高的能量密度和比电容值。电容值、能量密度和内阻受金属氧化物比例的影响。本研究将二氧化锰、氧化锡、二氧化钌、五氧化钒等金属氧化物与活性炭结合,用于复合电容器的研制。然后将选定的金属氧化物与活性炭结合,以不同的比例进行变化,并相应地研究其影响。
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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