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首页> 外文期刊>Nano Energy >Engineering 1D chain-like architecture with conducting polymer towards ultra-fast and high-capacity energy storage by reinforced pseudo-capacitance
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Engineering 1D chain-like architecture with conducting polymer towards ultra-fast and high-capacity energy storage by reinforced pseudo-capacitance

机译:工程1D链式架构,通过加强伪电容导电聚合物朝向超快速和高容量的储能

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摘要

Compared to other energy storage types, capacitive energy-storage serves increasingly significant roles in shortening reversible cycling times and enlarging high power than traditional batteries. It still suffers from the low pseudo-capacitive level and short of electrodes, along with low energy density. Considering the great theoretical capacity, here 1D chain-like Co3O4 is prepared though the thermal oxidation of the self-assembled rodlike Co-precursor. Followed by in-situ polymerization of pyrrole monomer, the Co3O4 were encapsulated in the transparent PPy shell. Particle size-tuning, 1D architecture-altering, conducting PPy introduction could effectively broaden the energy distribution of ions, increase the speed of ions directional transferring and improve the conductivity with protecting electrode materials. As Li-storage anodes, Co3O4/PPy delivers a stable capacity of 816.6 mAh g(-1) at 1.0 A g(-1) after 300 cycles. 801.3 mAh g(-1) at 5.0 A g(-1). The capacity of full-cell still delivers 526 mAh g(-1) at 3.0 A g(-1) after 50 loops. Supported by detailed kinetic analysis of CV curves, it is confirmed, (1) the nature of Co3O4 approaches to capacitor-like behavior; (2) its electrochemical properties are dominated by capacitive contributions with increased current density as well as cycling. This work provides an in-depth sight on Co3O4, and further improving its pseudo-capacitive behaviors.
机译:与其他能量存储类型相比,电容性能储存在缩短可逆循环时间和扩大高功率方面具有越来越重要的作用。它仍然存在低伪电容水平和电极短路,以及低能量密度。考虑到良好的理论能力,在这里,虽然自组装棒状共进前体的热氧化,因此制备了1D链状CO3O4。然后是吡咯单体的原位聚合,CO 3 O 4包封在透明PPY壳中。粒度调谐,1D架构改变,进行PPY介绍可以有效地扩大离子的能量分布,提高离子方向传递的速度,提高了保护电极材料的电导率。作为Li-Storage Anodes,在300次循环后,CO3O4 / PPY在1.0Ag(-1)下,稳定的容量为816.6mAhg(-1)。 801.3 mah g(-1)在5.0 a g(-1)。在50次环后,全牢房的容量仍在3.0 A G(-1)下提供526 MAH G(-1)。通过CV曲线的详细动力学分析支持,确认(1)CO3O4对电容器的性质的方法; (2)其电化学性能以电容贡献为主,电流贡献增加电流密度和循环。这项工作在CO3O4上提供了深入的景象,并进一步提高了其伪电容行为。

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  • 来源
    《Nano Energy》 |2018年第2018期|共13页
  • 作者单位

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

    Cent S Univ Coll Chem &

    Chem Engn State Key Lab Powder Met Changsha 410083 Hunan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程;
  • 关键词

    Chain-like Co3O4; Conducting polymer; Electrochemistry; Ultra-fast ions transferring; Pseudo-capacitance;

    机译:链状CO3O4;导电聚合物;电化学;超快速离子转移;伪电容;

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