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羧甲基纤维素-聚苯胺/碳纳米管(CMC-PANI/CNT)薄膜作为用于超级电容器的柔性且具有高电化学活性的电极。

Carboxymethylcellulose-polyaniline/carbon nanotube (CMC-PANI/CNT) film as flexible and highly electrochemical active electrode for supercapacitors.

作者信息

Xu Hanping, Cui Linlin, Pan Xian, An Yingrui, Jin Xiaojuan

机构信息

Beijing Key Laboratory of Lignocellulosic Chemistry, MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, MOE Key Laboratory of Wooden Material Science and Application, Beijing Forestry University, 35 Qinghua East Road, Haidian, Beijing 100083, China.

Department of Medicinal Chemistry, College of Pharmaceutical Sciences of Capital Medical University, 10 Xi Tou Tiao, You An Men, Beijing 100069, China.

出版信息

Int J Biol Macromol. 2022 Oct 31;219:1135-1145. doi: 10.1016/j.ijbiomac.2022.08.141. Epub 2022 Aug 29.

Abstract

Herein, we demonstrate a flexible, structural robust and highly electrochemical active film electrode based on evenly distributed carboxymethylcellulose-polyaniline/carbon nanotube (CMC-PANI/CNT) for supercapacitors. In this process, vertically aligned PANI nanoparticles grow in an orderly manner on CMC fibers. The highly dispersed CNT nanomaterials are then introduced by simple layer-by-layer assembly, eventually forming an interwoven network structure. Mechanical tests have shown that the obtained CMC-PANI/CNT film exhibit excellent robustness and flexibility, and can be used directly as electrodes without any conductive additives and binders. The CMC-PANI/CNT electrode with optimal CMC, PANI and CNT contents demonstrates an excellent area specific capacitance of 3106.3 mF cm at 5 mA cm and a gravimetric specific capacitance of 348.8 F g at 0.5 A g. Furthermore, the symmetric supercapacitor (SSC) assembled with CMC-PANI/CNT exhibits a high energy density of 99.89 μW h cm at a power density of 400.02 μW cm, and a good cycling stability (with capacitance retention of 89.2 % after 5000 cycles). The cost-effective and eco-friendly preparation method of free-standing CMC-PANI/CNT film electrodes provide a novel insight for developing flexible energy storage devices.

摘要

在此,我们展示了一种基于均匀分布的羧甲基纤维素-聚苯胺/碳纳米管(CMC-PANI/CNT)的柔性、结构坚固且具有高电化学活性的薄膜电极,用于超级电容器。在此过程中,垂直排列的聚苯胺纳米颗粒在CMC纤维上有序生长。然后通过简单的逐层组装引入高度分散的碳纳米管纳米材料,最终形成交织的网络结构。力学测试表明,所制备的CMC-PANI/CNT薄膜具有优异的坚固性和柔韧性,无需任何导电添加剂和粘合剂即可直接用作电极。具有最佳CMC、PANI和CNT含量的CMC-PANI/CNT电极在5 mA cm时表现出3106.3 mF cm的优异面积比电容,在0.5 A g时表现出348.8 F g的质量比电容。此外,用CMC-PANI/CNT组装的对称超级电容器(SSC)在功率密度为400.02 μW cm时表现出99.89 μW h cm的高能量密度,以及良好的循环稳定性(5000次循环后电容保持率为89.2%)。独立的CMC-PANI/CNT薄膜电极具有成本效益且环保的制备方法,为开发柔性储能装置提供了新的思路。

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