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生长在树枝状聚合物(PAMAM)功能化多壁碳纳米管上的取向聚苯胺纳米线阵列作为超级电容器电极材料。

Oriented Polyaniline Nanowire Arrays Grown on Dendrimer (PAMAM) Functionalized Multiwalled Carbon Nanotubes as Supercapacitor Electrode Materials.

作者信息

Jin Lin, Jiang Yu, Zhang Mengjie, Li Honglong, Xiao Linghan, Li Ming, Ao Yuhui

机构信息

College of Chemistry and Life Science, Jilin Province Key Laboratory of Carbon Fiber Development and Application, Changchun University of Technology, Changchun, 130012, People's Republic of China.

出版信息

Sci Rep. 2018 Apr 19;8(1):6268. doi: 10.1038/s41598-018-24265-7.

Abstract

At present, PANI/MWNT composites have been paid more attention as promising electrode materials in supercapacitors. Yet some shortcomings still limit the widely application of PANI/MWNT electrolytes. In this work, in order to improve capacitance ability and long-term stability of electrode, a multi-amino dendrimer (PAMAM) had been covalently linked onto multi-walled carbon nanotubes (MWNT) as a bridge to facilitating covalent graft of polyaniline (PANI), affording P-MWNT/PANI electrode composites for supercapacitor. Surprisingly, ordered arrays of PANI nanowires on MWNT (setaria-like morphology) had been observed by scanning electron microscopy (SEM). Electrochemical properties of P-MWNT/PANI electrode had been characterized by cyclic voltammetry (CV) and galvanostatic charge-discharge technique. The specific capacitance and long cycle life of P-MWNT-PANI electrode material were both much higher than MWNT/PANI. These interesting results indicate that multi-amino dendrimer, PAMAM, covalently linked on MWNT provides more reaction sites for in-situ polymerization of ordered PANI, which could efficiently shorten the ion diffusion length in electrolytes and lead to making fully use of conducting materials.

摘要

目前,聚苯胺/多壁碳纳米管(PANI/MWNT)复合材料作为超级电容器中有前景的电极材料受到了更多关注。然而,一些缺点仍然限制了PANI/MWNT电解质的广泛应用。在这项工作中,为了提高电极的电容性能和长期稳定性,一种多氨基树枝状大分子(PAMAM)被共价连接到多壁碳纳米管(MWNT)上作为桥梁,以促进聚苯胺(PANI)的共价接枝,从而得到用于超级电容器的P-MWNT/PANI电极复合材料。令人惊讶的是,通过扫描电子显微镜(SEM)观察到MWNT上有聚苯胺纳米线的有序阵列(粟状形态)。P-MWNT/PANI电极的电化学性能通过循环伏安法(CV)和恒电流充放电技术进行了表征。P-MWNT-PANI电极材料的比电容和长循环寿命均远高于MWNT/PANI。这些有趣的结果表明,共价连接在MWNT上的多氨基树枝状大分子PAMAM为有序PANI的原位聚合提供了更多反应位点,这可以有效缩短电解质中的离子扩散长度,并导致充分利用导电材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e15b/5908880/99911c7d9f93/41598_2018_24265_Fig1_HTML.jpg

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