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首页> 外文期刊>Journal of Energy Storage >Facial electrosynthesis of hydrophilic poly(aniline-co-p-phenylenediamine) nanostructures for high performance supercapacitor electrodes
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Facial electrosynthesis of hydrophilic poly(aniline-co-p-phenylenediamine) nanostructures for high performance supercapacitor electrodes

机译:高性能超级电容器电极的亲水性聚(苯胺-对-对-苯二胺)纳米结构的表面电合成

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摘要

A high-rate, coin cell (CR2023) supercapacitor (SC) with excellent charge storage performances was fabricated using hydrophilic poly(aniline-co-p-phenylenediamine) nanofiber-decorated nitrogen-doped reduced graphene oxide (referred to as P(ANi-co-pPDA)@N-rGO) as a redox electrode material and 25 mM Fe(CN)(6)(4+) /Fe(CN)(6)(3+) in 1 M H2SO4 as a redox-active electrolyte. P(ANi-co-pPDA)@N-rGOs were synthesized by co-electropolymerization using different co-monomer feeding ratios in 0.5 M H2SO4. From electrochemical measurements, P(ANi-co-pPDA)@N-rGO) with 4% pPDA ratio (noted as S-2@N-rGO) showed a high specific capacity of 350 Cg(-1) (413 Cg(-1) at 10 mV/s), which was 2.2 and 4.5 times as high as those of PANi@N-rGO and N-rGO, respectively. Moreover, S-2@N-rGO exhibited an improved specific energy of 35.4 Whkg(-1) with a specific power of 969 Wkg(-1) at 0.5 Ag-1, a good capacity retention of 85% after 1000 cycles at 6 Ag-1 and a low equivalent series resistance of 2.83 Omega. The excellent SC performances can be attributed to its high electrical conductivity, highly hydrophilic nature and excellent electrochemical properties leading to a synergistic effect between co-polymer/N-rGO electrodes and Fe(CN)(6)(4+) /Fe(CN)(6)(3+) redox electrolytes. Thus, the P(ANi-co-pPDA) @N-rGO) SCs produced by the simple cyclic-co-electropolymerization method were highly potential for advanced energy storage applications.
机译:使用亲水性聚(苯胺-对-对-苯二胺)纳米纤维修饰的氮掺杂还原氧化石墨烯(称为P(ANi-Ni)制成了具有优异电荷存储性能的高速纽扣电池(CR2023)超级电容器(SC)。 co-pPDA)@ N-rGO)作为氧化还原电极材料,并在1 M H2SO4中将25 mM Fe(CN)(6)(4+)/ Fe(CN)(6)(3+)作为氧化还原活性电解质。 P(ANi-co-pPDA)@ N-rGOs是通过在0.5 M H2SO4中使用不同的共聚单体进料比通过共电聚合而合成的。根据电化学测量,pPDA比率为4%的P(ANi-co-pPDA)@ N-rGO)(记为S-2 @ N-rGO)显示出350 Cg(-1)(413 Cg(- 1)以10 mV / s的速度分别是PANi @ N-rGO和N-rGO的2.2倍和4.5倍。此外,S-2 @ N-rGO在0.5 Ag-1时的比能量提高到35.4 Whkg(-1),比功率在969 Wkg(-1)时,在6次1000次循环后,容量保持率高达85%。 Ag-1和2.83Ω的低等效串联电阻。优异的SC性能可归因于其高电导率,高度亲水性和出色的电化学性能,从而导致共聚物/ N-rGO电极与Fe(CN)(6)(4+)/ Fe(CN)之间的协同作用)(6)(3+)氧化还原电解质。因此,通过简单的循环共电聚合方法生产的P(ANi-co-pPDA)@ N-rGO)SC具有先进的储能应用潜力。

著录项

  • 来源
    《Journal of Energy Storage》 |2019年第4期|116-130|共15页
  • 作者单位

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

    NSTDA, Graphene & Printed Elect Res Team GPE, 111 Thailand Sci Pk Phahon Yothin Rd, Klongluang 12120, Phathum Thani, Thailand;

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

    Poly(aniline-co-p-phenylenediamine); Nitrogen-doped reduced graphene oxide; Redox-active electrolyte; Supercapacitor;

    机译:聚(苯胺-对-对苯二胺);氮掺杂还原氧化石墨烯;氧化还原活性电解质;超级电容器;

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