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Redox-active polymer hydrogel electrolyte in biowaste-derived microporous carbon-based high capacitance and energy density ultracapacitors

机译:氧化还原活性聚合物水凝胶电解液在基于微孔碳的高电容和能量密度超容器中的高电容器

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摘要

High capacitance and energy density in ultracapacitors can be achieved by suitable match between electrode material and electrolyte. In this paper, the development of biowaste-derived microporous carbon electrode material combined with cost-effective redox mediator incorporated polymer hydrogel electrolyte is described for high performance ultracapacitor applications. A high specific capacitance of similar to 200 F g(-1) at a current density of 1 A g(-1) is attained for ultracapacitor based on Terminalia Catappa fruit shell-derived microporous carbon (TCFSMC) electrode material and PVA/H2SO4/FeCl3 center dot 6H(2)O (PHF) based redox-active polymer hydrogel electrolyte. At the same time, an excellent coulombic efficiency and cyclic stability of 99.7% and 64% respectively are maintained up to long 90000 charge-discharge cycles. Further, different combinations of 2, 3, 4 and 5 ultracapacitors in series am assembled to realize high energy density with wide voltage window. Maximum energy and power density of similar to 120W h kg(-1) and 43 kW kg(-1) respectively are realized for 5 ultracapacitors assembled in series with a 5 V voltage window. Moreover, a charged device of 2 ultracapacitors connected in series is able to light up a commercial red-light emitting diode (LED) for more than 150 s, demonstrating its promising potential in practical applications. Such electrode material and electrolyte match provide opportunities for the development of next generation low-cost ultracapacitors with improved capacitance as well as energy density.
机译:通过电极材料和电解质之间的合适匹配可以实现超超容器中的高电容和能量密度。在本文中,对高性能超容器应用描述了与成本效益的氧化还原介质结合的基础氧化硅晶碳电极材料的发展。基于常系Catappa果壳衍生的微孔碳(TCFSMC)电极材料和PVA / H2SO4 / PVA / H2SO4 / / H2SO4 /的超超抗acite(TCFSMC)和PVA / H2SO4 / / FECL3中心点6H(2)O(PHF)基氧化还原活性聚合物水凝胶电解质。同时,优异的库仑效率和99.7%和64%的循环稳定性分别保持长达90000充放电循环。此外,在串联的2,3,4和5个超容器的不同组合组装以实现具有宽电压窗口的高能量密度。分别实现了与5 V电压窗口串联组装的5个Ultracatopitors的最大能量和电力密度。此外,串联连接的2个超容器的带电装置能够点亮商业红发光二极管(LED),超过150秒,在实际应用中展示了其有希望的潜力。这种电极材料和电解质匹配为具有改进的电容以及能量密度的开发的下一代低成本超级超容器提供了机会。

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