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简便激活商用碳毡作为用于柔性超级电容器的低成本自支撑电极

Facile Activation of Commercial Carbon Felt as a Low-Cost Free-Standing Electrode for Flexible Supercapacitors.

作者信息

Lou Gaobo, Wu Yatao, Zhu Xinqiang, Lu Yingzhuo, Yu Shuai, Yang Chunhai, Chen Hao, Guan Cao, Li Lu, Shen Zhehong

机构信息

School of Engineering , Zhejiang A&F University , Hangzhou 311300 , P. R. China.

School of Chemistry & Environment Engineering , Hubei University for Nationalities , Enshi 445000 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Dec 12;10(49):42503-42512. doi: 10.1021/acsami.8b16881. Epub 2018 Nov 28.

DOI:10.1021/acsami.8b16881
PMID:30433754
Abstract

High cost, low capacitance, and complicated synthesis process are still the key limitations for carbon-negative materials to meet their industrial production and application in high-energy-density asymmetric supercapacitors (ASCs). In this work, we demonstrate the facile preparation of ultrahigh-surface-area free-standing carbon material from low-cost industrial carbon felt (CF) and its application for flexible supercapacitor electrode with outstanding performance. Through a simple freeze-drying-assisted activation method, the as-prepared activated CF (ACF) was endowed with satisfactory flexibility, ultrahigh specific surface area of 2109 m g, good electric conductivity (311 S m), and excellent wettability to aqueous electrolyte. Owing to these merits, the ACF expressed an ultrahigh areal capacitance of 1441 mF cm, a high specific capacitance ( C) of 280 F g based on the mass of the whole electrode, and an impressive cycling stability (87% retention after 5000 cycles). When applied as a flexible freestanding electrode for MnO//ACF ASCs, the ACF-based device provided satisfactory areal energy densities of 0.283 and 0.104 mWh cm in aqueous and quasi-solid electrolytes, respectively. The values outperform many previously reported carbon-based electrochemical devices. The low cost of raw material and the facile fabrication process, together with the high electrochemical performance, make our ACF electrode highly applicable for the mass production of flexible energy-storage devices.

摘要

高成本、低电容以及复杂的合成工艺仍然是碳负极材料实现其在高能量密度不对称超级电容器(ASC)中的工业生产和应用的关键限制因素。在这项工作中,我们展示了一种从低成本工业碳毡(CF)简便制备超高比表面积自支撑碳材料的方法及其在具有优异性能的柔性超级电容器电极中的应用。通过一种简单的冷冻干燥辅助活化方法,所制备的活化碳毡(ACF)具有令人满意的柔韧性、2109 m²/g的超高比表面积、良好的导电性(311 S/m)以及对水性电解质优异的润湿性。由于这些优点,ACF表现出1441 mF/cm²的超高面积电容、基于整个电极质量的280 F/g的高比电容(C)以及令人印象深刻的循环稳定性(5000次循环后保持率为87%)。当用作MnO₂//ACF ASC的柔性自支撑电极时,基于ACF的器件在水性和准固态电解质中分别提供了0.283和0.104 mWh/cm²的令人满意的面积能量密度。这些值优于许多先前报道的基于碳的电化学器件。原材料的低成本和简便的制造工艺,以及高电化学性能,使得我们的ACF电极非常适用于柔性储能器件的大规模生产。

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