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Enhanced specific capacitance by a new dual redox-active electrolyte in activated carbon-based supercapacitors

机译:通过活性炭基超级电容器中新的双氧化还原活性电解质增强特定电容

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摘要

Commercial electrochemical capacitors exhibit high power density and long cycle life but suffer from low energy density due to low specific capacitance of activated carbon ( 200 F g(-1)). Redox-enhanced electrochemical capacitors achieve higher specific energy by adding redox-active ingredients to the electrolyte, which provide additional faradaic pseudo-capacitance. Here, high-performance and stable aqueous redox electrochemical capacitors using a new dual-active electrolyte is developed, and the specific capacitance of activated carbon increases to 885 F g(-1) after adding 0.05M FeBr3 with no degradation over 10,000 cycles in a two-electrode cell, which is more than four-fold of the original capacitance of 204 F g(-1). In addition, PVA was introduced to the electrolyte and proved to be a useful way to increase the coulombic efficiency. Moreover, this new energy storage system delivers high specific energy of 40Wh kg(-1) in 0.5M Na2SO4 based on the mass of electrodes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:商用电化学电容器表现出高功率密度和长循环寿命,但由于活性炭的低比电容(& 200 f g(-1)),遭受低能量密度。氧化还原电化学电容器通过向电解质中加入氧化还原活性成分来实现更高的特定能量,这提供了额外的佛拉夫伪电容。在此,开发了使用新的双活性电解质的高性能和稳定的氧化还原电化学电容器,并且在添加0.05m FEBR3后,活化碳的比电容增加到885 f g(-1),并且在a上没有降解超过10,000个循环两电极电池,其原始电容的距离为204f g(-1)的四倍。此外,PVA被引入电解质,并证明是提高库仑效率的有用方法。此外,这种新的能量存储系统基于电极的质量,在0.5M Na2SO4中以0.5M Na2SO4提供40Wh kg(-1)的高特定能量。 (c)2018年elestvier有限公司保留所有权利。

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