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Redox Additive Electrolyte Study of Mn–MOF Electrode for Supercapacitor Applications

机译:超级电容器应用的MN – MOF电极的氧化还原添加剂研究

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The selection of appropriate electrode materials and electrolytes in addition to optimization of their combinations is a key to improve the performance of supercapacitors.Among the new electrode materials,metal-organic frameworks(MOFs)based electrodes are attracting attention in energy storage devices,including supercapacitors and batteries.In recent years,the redox additive electrolytes have been projected as efficient options over simple aqueous electrolytes.The present work reports the synthesis of a layered MOF,i.e.,manganese-1,4-benzene dicarboxylate(Mn-BDC)and explores its utility as a supercapacitor electrode in the presence of an optimized redox additive electrolyte(0.2 M K3[Fe(CN)6] in 1 M Na2SO4(0.2 M KFCN)).As demonstrated for the first time in this study,the combined use of the porous Mn-BDC electrode and KFCN electrolyte has provided a synergistic enhancement in the supercapacitor performance.The present Mn-BDC/KFCN combination has delivered a high specific capacitance of 1590 F/g at a current density of 3 A/g.Furthermore,the Mn-BDC electrode could retain around 82% of its initial specific capacitance even after 3000 continuous charge-discharge cycles.In view of its encouraging electrochemical performance parameters,the proposed system can be touted as an efficient supercapacitor assembly.
机译:除了优化其组合外,还选择了适当的电极材料和电解质,这是改善超级电容器性能的关键。在新的电极材料,基于金属有机框架(MOF)的电极上,电极吸引了包括超级电容器在内的能量存储设备的注意力近年来,氧化还原添加剂电解质已被预测为简单水解的有效选择。目前的工作报告了层状MOF的合成,即锰-1,4-苯甲酸二羧酸盐(MN-BDC),并探索它在有优化的氧化还原添加剂电解质(0.2 m k3 [fe(cn)6]中,它作为超级电容器电极在1 m Na2SO4(0.2 m kfcn)中。多孔的Mn-BDC电极和肯德基电解液在超级电容器性能方面提供了协同的增强。当前的MN-BDC/KFCN组合提供了高特异性的电容1590 f/g在3 a/g的电流密度下,即使在3000连续的充电率周期后,MN-BDC电极即使在其鼓励的电化学性能参数,即使在3000连续的充电率周期之后,也可以保留其初始特定电容的82%。建议的系统可以作为有效的超级电容器组件吹捧。

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