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用于具有增强电荷存储能力的柔性储能系统的基于对苯二酚的电化学活性氧化还原介质。

Electrochemically active hydroquinone-based redox mediator for flexible energy storage system with improved charge storing ability.

作者信息

Choi Hyeonggeun, Kim Min-Cheol, Park Yeonsu, Lee Suok, Ahn Wook, Hong John, Inn Sohn Jung, Jang A-Rang, Lee Young-Woo

机构信息

Department of Energy Systems Engineering, Soonchunhyang University, Chungcheongnam-do 31538, Republic of Korea.

Division of Physics and Semiconductor Science, Dongguk University-Seoul, Seoul 04620, Republic of Korea.

出版信息

J Colloid Interface Sci. 2021 Apr 15;588:62-69. doi: 10.1016/j.jcis.2020.12.074. Epub 2020 Dec 31.

Abstract

Electrochemically active redox mediators have been widely investigated in energy conversion/storage system to improve overall catalytic activities and energy storing ability by inducing favorable surface redox reactions. However, the enhancement of electrochemical activity from the utilization of redox mediators (RMs) is only confirmed through theoretical computation and laboratory-scale experiment. The use of RMs for practical, wearable, and flexible applications has been scarcely researched. Herein, for the first time, a wearable fiber-based flexible energy storage system (f-FESS) with hydroquinone (HQ) composites as a catalytically active RM is introduced to demonstrate its energy-storing roles. The as-prepared f-FESS-HQ shows the superior electrochemical performance, such as the improved energy storage ability (211.16 F L and 29.3 mWh L) and long-term cyclability with a capacitance retention of 95.1% over 5000 cycles. Furthermore, the f-FESS-HQ can well maintain its original electrochemical properties under harsh mechanical stress (bending, knotting, and weaving conditions) as well as humid conditions in water and detergent solutions. Thus, the strategical use of electrochemically active RMs can provide the advanced solution for future wearable energy storage system.

摘要

电化学活性氧化还原介质已在能量转换/存储系统中得到广泛研究,通过引发有利的表面氧化还原反应来提高整体催化活性和能量存储能力。然而,利用氧化还原介质(RMs)提高电化学活性仅通过理论计算和实验室规模的实验得到证实。RMs在实际、可穿戴和柔性应用中的使用鲜有研究。在此,首次引入了一种以对苯二酚(HQ)复合材料作为催化活性RMs的可穿戴纤维基柔性储能系统(f-FESS),以展示其储能作用。所制备的f-FESS-HQ表现出优异的电化学性能,如提高的储能能力(211.16 F/L和29.3 mWh/L)以及在5000次循环中电容保持率为95.1%的长期循环稳定性。此外,f-FESS-HQ在苛刻的机械应力(弯曲、打结和编织条件)以及水和洗涤剂溶液中的潮湿条件下能够很好地保持其原始电化学性能。因此,电化学活性RMs的策略性应用可为未来可穿戴储能系统提供先进的解决方案。

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