用于柔性超级电容器电极的基于电活性聚合物刷的自愈合坚固薄膜

IF 4.1 2区 化学 Q2 POLYMER SCIENCE
Maria P. Sokolova, Vitaly K. Vorobiov, Nikolay N. Smirnov, Ivan S. Kuryndin, Natalya V. Bobrova, Michael A. Smirnov
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引用次数: 0

摘要

本研究的目的是开发基于聚苯胺共聚物的自愈合且坚固的导电薄膜,以用作柔性超级电容器的电极。为此,我们制作了导电聚合物刷(EPB)。EPB 的合成基于丙烯酰胺(AAm)在聚乙烯醇(PVA)上的接枝聚合,形成 PVA-PAAm 聚合物刷,随后苯胺和对苯二胺在 PVA-PAAm 上接枝共聚,形成具有导电共聚物(苯胺-对苯二胺)(PAPhDA)的 EPB。研究发现,第一阶段 PVA 和 PAAm 的比例对 EPB 的电化学性能有很大影响。通过浇铸 EPB 溶液并随后进行干燥,制备出了导电薄膜。利用原子力显微镜对薄膜的电流分布进行了研究,结果表明,与参考的 PVA-PAPhDA 和 PAAm-PAPhDA 样品相比,PAPhDA 在 EPB 中的分布更加均匀。研究表明,在最佳相对湿度水平(58%)下,薄膜经过固化和自我修复后,其机械特性和电导率值得到了很大程度的恢复。使用 EPB 薄膜电极的柔性超级电容器电池在电流密度为 1 mA-cm-2 时的比电容为 602 mF-cm-2,在 5000 次充放电循环后仍能保持 94% 的初始电容。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-healable and Robust Film Based on Electroactive Polymer Brush as Electrode for Flexible Supercapacitor

The aim of this study was to develop self-healable and robust electroconductive film based on polyaniline copolymer for application as electrode in flexible supercapacitor. For this purpose, the electroconductive polymer brushes (EPB) was elaborated. The synthesis of EPB is based on graft polymerizations of acrylamide (AAm) on poly(vinyl alcohol) (PVA) with formation of PVA-PAAm polymer brush and subsequent graft copolymerization of aniline and p-phenylenediamine on PVA-PAAm resulting in formation of EPB with electroconducting copoly(aniline-co-p-phenylenediamine) (PAPhDA). It was found that the ratio between PVA and PAAm at the first stage greatly influence the electrochemical performance of the EPBs. Electroconducting films were prepared by casting of EPB solution with subsequent drying. Investigation of electrical current distribution through the film with AFM reveal more uniform distribution of PAPhDA in EPB in comparison with reference PVA-PAPhDA and PAAm-PAPhDA samples. It was demonstrated that mechanical characteristics and electrical conductivity values of films restore at large extent after curring and self-healing under optimal relative humidity level (58%). The flexile supercapacitor cell with EPB film electrodes demonstrate specific capacitance 602 mF·cm−2 at the current density of 1 mA·cm−2 and retention 94% of initial capacitance after 5000 charge/discharge cycles.

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来源期刊
Chinese Journal of Polymer Science
Chinese Journal of Polymer Science 化学-高分子科学
CiteScore
7.10
自引率
11.60%
发文量
218
审稿时长
6.0 months
期刊介绍: Chinese Journal of Polymer Science (CJPS) is a monthly journal published in English and sponsored by the Chinese Chemical Society and the Institute of Chemistry, Chinese Academy of Sciences. CJPS is edited by a distinguished Editorial Board headed by Professor Qi-Feng Zhou and supported by an International Advisory Board in which many famous active polymer scientists all over the world are included. The journal was first published in 1983 under the title Polymer Communications and has the current name since 1985. CJPS is a peer-reviewed journal dedicated to the timely publication of original research ideas and results in the field of polymer science. The issues may carry regular papers, rapid communications and notes as well as feature articles. As a leading polymer journal in China published in English, CJPS reflects the new achievements obtained in various laboratories of China, CJPS also includes papers submitted by scientists of different countries and regions outside of China, reflecting the international nature of the journal.
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