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首页> 外文期刊>RSC Advances >Photo-assisted synthesis of coaxial-structured polypyrrole/electrochemically hydrogenated TiO2 nanotube arrays as a high performance supercapacitor electrode
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Photo-assisted synthesis of coaxial-structured polypyrrole/electrochemically hydrogenated TiO2 nanotube arrays as a high performance supercapacitor electrode

机译:具有高性能超级电极的高性能超级电极的同轴结构聚吡咯/电化学氢化TiO2纳米管阵列的光辅助合成

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摘要

An organic-inorganic coaxial-structured hybrid of PPy/EH-TNTAs electrode with outstanding supercapacitive performance was developed by incorporating electroactive polypyrrole (PPy) into a highly-conductive TiO2 substrate, namely, electrochemically hydrogenated TiO2 nanotube arrays (EH-TNTAs) through a photo-assisted potentiodynamic electrodeposition route. The as-fabricated PPy/EH-TNTAs hybrid electrode achieves a specific capacitance of up to 614.7 F g(-1) at 1.0 A g(-1) with 87.4% of the initial capacitance remaining after 5000 cycles at 10 A g(-1), outperforming other fabricated PPy-TNTAs hybrid electrodes. The photoelectrodeposited and electrodeposited hybrid samples as well as the EH-TNTAs-based and air-TNTAs-based hybrid samples were fully compared from electropolymerization process, morphology, structural feature and electrochemical perspectives. The results indicate that the synergy of remarkably improved conductivity and electrochemical properties of the TiO2 substrate induced by intentionally introduced Ti3+ (O-vacancies) as well as the homogenous and integrated deposition of PPy triggered by light illumination enabled the outstanding supercapacitive performance of the PPy/EH-TNTAs hybrid electrode. A symmetric supercapacitor device was assembled using the PPy/EH-TNTAs hybrid as both a positive and negative electrode, respectively. It displays a high energy density of 17.7 W h kg(-1) at a power density of 1257 W kg(-1). This organic-inorganic coaxial-structured PPy/EH-TNTAs electrode will be a competitive and promising candidate for application in future energy storage devices.
机译:以优异的超级电容性能的PPy / EH-TNTAs电极的有机 - 无机同轴结构的混合动力通过配合在电活性聚吡咯(PPY)转换成高导电性的TiO 2基底的发展,即,电化学通过氢化TiO2纳米管阵列(EH-TNTAs)光辅助的电位电航线。将如此制造的聚吡咯/ EH-TNTAs混合电极在1.0克(-1)达到了一个特定电容,以614.7 F G(-1),在10 A G 5000次循环之后剩余的初始电容的87.4%( - 1),优于其他制造的聚吡咯 - TNTAs混合电极。的photoelectrodeposited和电沉积混合样品以及对EH-TNTAs基和空气TNTAs基于混合样品完全从电聚合过程中,形态,结构特征和电化学观点比较。结果表明,显着改善的导电性和诱导有意引入的TI3 +(O-空缺)以及聚吡咯的均匀和集成沉积触发由光照射的TiO 2基底上的电化学特性的协同作用使聚吡咯的突出超级电容性能/ EH-TNTAs混合电极。对称超级电容器装置是用聚吡咯/ EH-TNTAs混合同时作为正极和负极分别组装。它显示的高能量密度的17.7 W时千克(-1)以1257千克w ^的功率密度(-1)。该有机 - 无机同轴结构的PPy / EH-TNTAs电极将是在将来的能量存储装置的应用程序有竞争力和希望的候选者。

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  • 来源
    《RSC Advances》 |2018年第24期|共8页
  • 作者单位

    Hefei Univ Technol Inst Ind &

    Equipment Technol Hefei 230009 Anhui Peoples R China;

    Hefei Univ Technol Inst Ind &

    Equipment Technol Hefei 230009 Anhui Peoples R China;

    Hefei Univ Technol Inst Ind &

    Equipment Technol Hefei 230009 Anhui Peoples R China;

    Hefei Univ Technol Inst Ind &

    Equipment Technol Hefei 230009 Anhui Peoples R China;

    Key Lab Adv Funct Mat &

    Devices Anhui Prov Hefei 230009 Anhui Peoples R China;

    Key Lab Adv Funct Mat &

    Devices Anhui Prov Hefei 230009 Anhui Peoples R China;

    Australian Natl Univ Dept Elect Mat Engn Res Sch Phys &

    Engn Canberra ACT 2601 Australia;

    Key Lab Adv Funct Mat &

    Devices Anhui Prov Hefei 230009 Anhui 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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