Utilizing hybrid faradaic mechanism via catalytic and surface interactions for high-performance flexible energy storage system
  • Lee, Dong-Gyu
  • Choi, Hyeonggeun
  • Park, Yeonsu
  • Kim, Min-Cheol
  • Park, Jong Bae
  • ... Sohn, Jung Inn
  • 외 6명
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초록

Improving the capacitance and energy density is a significant challenge while developing practical and flexible energy storage system (ESS). Redox mediators (RMs), as redox-active electrolyte additives, can provide additional energy storing capability via electrochemical faradaic contribution on electrodes for high-performance flexible ESSs. Particularly, determining effective material combinations between electrodes and RMs is essential for maximizing surface faradaic redox reactions for energy-storage performance. In this study, an electrode-RM system comprising heterostructured hybrid (carbon fiber (CF)/ MnO2) faradaic electrodes and iodine RMs (I-RMs) in a redox-active electrolyte is investigated. The CF/ MnO2 with the I-RMs (CF/MnO2-I) induces dominant catalytic faradaic interaction with the I-RMs, significantly enhancing the surface faradaic kinetics and increasing the overall energy-storage performance. The CF/MnO2-I ESSs show a 12.6-fold (or higher) increased volumetric energy density of 793.81 mWh L-1 at a current of 10 lA relative to ESSs using CF/MnO2 without I-RMs (CF/MnO2). Moreover, the CF/ MnO2-I retains 93.1% of its initial capacitance after 10,000 cycles, validating the excellent cyclability. Finally, the flexibility of the ESSs is tested at different bending angles (180 & DEG; to 0 & DEG;), demonstrating its feasibility for flexible and high-wear environments. Therefore, CF/MnO2 electrodes present a practical material combination for high-performance flexible energy-storage devices owing to the catalytic faradaic interaction with I-RMs.& COPY; 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press. All rights reserved.

키워드

Energy storage systemRedox mediatorsFaradaic electrodesCatalytic interactionsMechanical stabilityCARBON NANOTUBESREDOX MEDIATORSGEL POLYMERFIBERSUPERCAPACITORELECTROLYTESNANOSHEETSDESIGNIODINENI
제목
Utilizing hybrid faradaic mechanism via catalytic and surface interactions for high-performance flexible energy storage system
저자
Lee, Dong-GyuChoi, HyeonggeunPark, YeonsuKim, Min-CheolPark, Jong BaeLee, SuokCho, YounghyunAhn, WookJang, A-RangSohn, Jung InnHong, JohnLee, Young-Woo
DOI
10.1016/j.jechem.2023.04.031
발행일
2023-08
유형
Article
저널명
Journal of Energy Chemistry
83
페이지
541 ~ 548