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基于聚苯胺阵列包覆石墨烯气凝胶电极的柔性超级电容器

Flexible Supercapacitors Based on Polyaniline Arrays Coated Graphene Aerogel Electrodes.

作者信息

Yang Yu, Xi Yunlong, Li Junzhi, Wei Guodong, Klyui N I, Han Wei

机构信息

Key Laboratory of Physics and Technology for Advanced Batteries (Ministry of Education), Jilin University, Changchun, 130012, People's Republic of China.

Institute of Semiconductor Physics, National Academy of Sciences of Ukraine, Pr. Nauki 41, 03028, Kyiv, Ukraine.

出版信息

Nanoscale Res Lett. 2017 Dec;12(1):394. doi: 10.1186/s11671-017-2159-9. Epub 2017 Jun 8.

Abstract

Flexible supercapacitors(SCs) made by reduced graphene oxide (rGO)-based aerogel usually suffer from the low energy density, short cycle life and bad flexibility. In this study, a new, synthetic strategy was developed for enhancing the electrochemical performances of rGO aerogel-based supercapacitor via electrodeposition polyaniline arrays on the prepared ultralight rGO aerogel. The novel hybrid composites with coated polyaniline (PANI) arrays growing on the rGO surface can take full advantage of the rich open-pore and excellent conductivity of the crosslinking framework structure of 3D rGO aerogel and high capacitance contribution from the PANI. The obtained hybrid composites exhibit excellent electrochemical performance with a specific capacitance of 432 F g at the current density of 1 A g, robust cycling stability to maintain 85% after 10,000 charge/discharge cycles and high energy density of 25 W h kg. Furthermore, the flexible all-solid-state supercapacitor have superior flexibility and outstanding stability under different bending states from the straight state to the 90° status. The high-performance flexible all-solid-state SCs together with the lighting tests demonstrate it possible for applications in portable electronics.

摘要

由还原氧化石墨烯(rGO)基气凝胶制成的柔性超级电容器(SCs)通常存在能量密度低、循环寿命短和柔韧性差的问题。在本研究中,开发了一种新的合成策略,通过在制备的超轻rGO气凝胶上电沉积聚苯胺阵列来提高基于rGO气凝胶的超级电容器的电化学性能。在rGO表面生长有包覆聚苯胺(PANI)阵列的新型杂化复合材料可以充分利用3D rGO气凝胶交联骨架结构丰富的开孔和优异的导电性以及PANI的高电容贡献。所获得的杂化复合材料表现出优异的电化学性能,在1 A g的电流密度下比电容为432 F g,具有稳健的循环稳定性,在10000次充放电循环后仍能保持85%,能量密度为25 W h kg。此外,柔性全固态超级电容器在从直态到90°状态的不同弯曲状态下具有优异的柔韧性和出色的稳定性。高性能柔性全固态SCs以及照明测试表明其在便携式电子产品中的应用具有可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de7e/5465002/db0577fa01d2/11671_2017_2159_Fig1_HTML.jpg

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