A Redox-Mediator-Integrated Flexible Micro-Supercapacitor with Improved Energy Storage Capability and Suppressed Self-Discharge Rate

被引:11
作者
Wi, Sung Min [1 ]
Kim, Jihong [1 ]
Lee, Suok [1 ]
Choi, Yu-Rim [1 ]
Kim, Sung Hoon [1 ]
Park, Jong Bae [2 ]
Cho, Younghyun [1 ]
Ahn, Wook [1 ]
Jang, A-Rang [3 ]
Hong, John [4 ]
Lee, Young-Woo [1 ]
机构
[1] Soonchunhyang Univ, Dept Energy Syst Engn, Asan 31538, South Korea
[2] Korea Basic Sci Inst, Jeonju Ctr, Jeonju 54907, South Korea
[3] Semyung Univ, Dept Elect Engn, Jecheon Si 27136, South Korea
[4] Kookmin Univ, Sch Mat Sci & Engn, Seoul 02707, South Korea
关键词
hydroquinone-based polymer-gel electrolyte; micro-supercapacitors; Faradaic redox reactions; energy storage; ACTIVE ELECTROLYTE; RAMAN-SPECTROSCOPY; GRAPHENE; CARBON; FABRICATION; DENSITY; HYDROQUINONE; PERFORMANCE; ADDITIVES; GRAPHITE;
D O I
10.3390/nano11113027
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
To effectively improve the energy density and reduce the self-discharging rate of micro-supercapacitors, an advanced strategy is required. In this study, we developed a hydroquinone (HQ)-based polymer-gel electrolyte (HQ-gel) for micro-supercapacitors. The introduced HQ redox mediators (HQ-RMs) in the gel electrolyte composites underwent additional Faradaic redox reactions and synergistically increased the overall energy density of the micro-supercapacitors. Moreover, the HQ-RMs in the gel electrolyte weakened the self-discharging behavior by providing a strong binding attachment of charged ions on the porous graphitized carbon electrodes after the redox reactions. The micro-supercapacitors with HQ gel (HQ-MSCs) showed excellent energy storage performance, including a high energy volumetric capacitance of 255 mF cm(-3) at a current of 1 mu A, which is 2.7 times higher than the micro-supercapacitors based on bare-gel electrolyte composites without HQ-RMs (b-MSCs). The HQ-MSCs showed comparatively low self-discharging behavior with an open circuit potential drop of 37% compared to the b-MSCs with an open circuit potential drop of 60% after 2000 s. The assembled HQ-MSCs exhibited high mechanical flexibility over the applied external tensile and compressive strains. Additionally, the HQ-MSCs show the adequate circuit compatibility within series and parallel connections and the good cycling performance of capacitance retention of 95% after 3000 cycles.
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页数:11
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