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首页> 外文期刊>Materials Science and Engineering >Electrospun fibrous electrodes with tunable microstructure made of polyaniline/multi-walled carbon nanotube suspension for all-solid-state supercapacitors
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Electrospun fibrous electrodes with tunable microstructure made of polyaniline/multi-walled carbon nanotube suspension for all-solid-state supercapacitors

机译:由聚苯胺/多壁碳纳米管悬浮液制成的具有可调微结构的电纺纤维电极,用于全固态超级电容器

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摘要

Electrospinning technique was used to prepare high performance fibrous electrodes with tunable microstructure for all-solid-state electrochemical supercapacitor. Symmetrically sandwiched supercapacitors consisting of flexible electrospun polyaniline (PANI)/multi-walled carbon nanotube (MWCNT) electrodes and polyvinyl alcohol (PVA)/sulfuric acid (H_2SO_4) gel electrolyte were assembled. Tunable microstructure of the fibrous electrode was obtained by changing the electrospinning parameters including the collector-needle distance (CND) and the suspension flow rate (SFR). Results show that, higher CND combining with lower SFR can result in a smaller average diameter of the electrospun fibers and hence improve the electrode performance. When the CND changes from 80 to 140 mm, the average fiber diameter will decrease from 2.89 to 1.21 μm, and the specific surface area of the electrode can increase from 57 to 83 m~2·g~(-1). The corresponding specific capacitance of the electrospun electrode will therefore increase from 129.5 to 180 F·g~(-1), leading to a synchronous improvement of the energy density of the supercapacitor from 18 to 25 Wh·g~(-1). On the other hand, the supercapacitors using fibrous electrodes in this work also show good rate capability and cycling stability. Using the electrode with an average fiber diameter of 1.21 μm, the specific capacitances can maintain 131 F·g~(-1) at a current density of 4 A·g~(-1), which is 73% of the specific capacitance of the same sample at a current density of 0.5 A·g~(-1). And the specific capacitance of the electrode can retain 89% after 1500 charge/discharge cycles.
机译:采用静电纺丝技术制备了具有可调谐微结构的高性能纤维电极,用于全固态电化学超级电容器。组装了由柔性电纺聚苯胺(PANI)/多壁碳纳米管(MWCNT)电极和聚乙烯醇(PVA)/硫酸(H_2SO_4)凝胶电解质组成的对称夹心超级电容器。通过改变静电纺丝参数,包括集电极-针距(CND)和悬浮液流速(SFR),可以获得纤维状电极的可调微结构。结果表明,较高的CND和较低的SFR可以导致电纺纤维的平均直径较小,从而改善电极性能。当CND从80 mm变为140 mm时,平均纤维直径将从2.89μm减小至1.21μm,电极的比表面积可以从57 m〜2·g〜(-1)增加。因此,电纺丝电极的相应比电容将从129.5增加到180 F·g〜(-1),从而使超级电容器的能量密度从18 Wh·g〜(-1)同步提高。另一方面,在这项工作中使用纤维电极的超级电容器也显示出良好的速率能力和循环稳定性。使用平均纤维直径为1.21μm的电极,在4 A·g〜(-1)的电流密度下,比电容可以保持131 F·g〜(-1),这是电极比电容的73%。相同样品的电流密度为0.5 A·g〜(-1)。在1500次充/放电循环后,电极的比电容可保持89%。

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  • 来源
    《Materials Science and Engineering》 |2016年第9期|61-66|共6页
  • 作者单位

    Key Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116023, China;

    Key Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116023, China;

    Key Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116023, China;

    Key Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116023, China,Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116023, China;

    Key Laboratory for Precision and Non-traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116023, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Supercapacitor; Electrospin; Tunable; Electrodes;

    机译:超级电容器静电纺丝;可调电极;

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