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Vertically aligned carbon nanotube@MnO2 nanosheet arrays grown on carbon cloth for high performance flexible electrodes of supercapacitors

机译:垂直对齐的碳纳米管@ MnO2纳米筒阵列在碳布上生长,用于高效柔性电极的超级电容器

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摘要

Vertical alligned carbon nanotube@MnO2 (VACNT@MnO2) arrays grown on carbon cloth were prepared as high performance flexible electrodes for supercapacitors. VACNTs first grew on carbon cloth with the method of plasma enhanced chemical vapor deposition (PECVD) to obtain firm connection between CNTs and carbon cloth, and delta-MnO2 nanosheets were deposited on the surface of VACNTs to form a VACNT@MnO2 core-shell structure. The VACNT@MnO2 on carbon cloth (VACNT@MnO2/CC) exhibited a remarkable specific capacitance (235 F g(-1) at the scan rate of 2 mV s(-1) based on the total mass of VACNTs and MnO2), an excellent rate performance with a specific capacitance of 188 F g(-1) at 100 mV s(-1) and a stable cycling ability (nearly 100% retention after 5000 charge/discharge cycles at 5 A g(-1)). The fabricated symmetric supercapacitor from the self-supported VACNT@MnO2/CC without any additive reagents had the same electrochemical energy storage performance when this supercapacitor was bent 180 degrees, revealing the excellent flexibility of our prepared flexible electrodes. The excellent performances in electrochemical properties and flexibility mainly originated from a strong mechanical coupling between CNTs and CC as well as sufficient contact between the electrolyte and the surface of MnO2 nanosheets in such an arrayed structure.
机译:在碳布中生长的垂直碳纳米管@ MnO2(Vacnt @ MnO2)阵列被制成高性能柔性电极,适用于超级电容器。 Vacnts首先在碳布上增长碳布,血浆增强的化学气相沉积(PECVD)以获得CNT和碳布的牢固连接,并且倾达Δ-mnO2纳米晶片在疫污的表面上沉积,形成Vacnt @ mnO2核心壳结构。碳布上的Vacnt @ mnO2(Vacnt @ mno2 / cc),基于vacnts和mno2的总质量,在2 mv s(-1)的扫描速率下表现出显着的特定电容(235 f g(-1)),具有100mV S(-1)的特定电容的优异速率性能为100mV S(-1)和稳定的循环能力(在5000g(-1)的5000充电/放电循环后几乎100%保持循环)。当该超级电容器弯曲180度时,来自自支撑性Vacnt @ MnO2 / Cc的制造对称超级电容器具有相同的电化学能量存储性能,揭示了所制备的柔性电极的优异柔韧性。电化学性质和柔韧性的优异性能主要来自CNT和CC之间的强机械耦合以及在这种阵列结构中的电解质和MNO2纳米片的表面之间的充分接触。

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  • 来源
    《RSC Advances》 |2015年第94期|共6页
  • 作者单位

    Beijing Inst Technol Sch Mat Sci &

    Engn Beijing 100081 Peoples R China;

    Natl Ctr Nanosci &

    Technol NCNST Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol NCNST Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol NCNST Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol NCNST Beijing 100190 Peoples R China;

    Natl Ctr Nanosci &

    Technol NCNST Beijing 100190 Peoples R China;

    Beijing Inst Technol Sch Mat Sci &

    Engn Beijing 100081 Peoples R China;

    Natl Ctr Nanosci &

    Technol NCNST Beijing 100190 Peoples R China;

    Beijing Inst Technol Sch Mat Sci &

    Engn Beijing 100081 Peoples R China;

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

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