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3C 2T x-paper]]>

机译:<![CDATA [CDATA [基于TI的非对称超级电容器的性能评估 3 C 2 T < CE:INF LOC =“post”> x -paper]]>

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摘要

AbstractTi3C2Txis promising negative electrode materials for asymmetric supercapacitor (ASC). The Ti3C2Txsheets are obtained by etching Ti3AlC2powders in the mixture solution of HCl and LiF, then vacuum filtrated to achieve a free-standing Ti3C2Tx-paper. The electrochemical performance of Ti3C2Tx-paper was measured and a high volumetric capacitance of 295.4?F?cm?3was achieved. Meanwhile, it exhibited a high capability rate of 79.7% from 2?mV?s?1to 100?mV?s?1and long cycle life with 94.4% retention of its initial after charged and discharged for 15000 cycles at a current density of 10?A?g?1. ASC devices were fabricated using Ti3C2Tx-paper as negative electrode and carbonized filter paper as positive electrode. The energy density and power density of ASC device are 4.5?Wh kg?1and 1.3?kW?kg?1, respectively. The application of the device has been demonstrated by lighting red light emitting diode, endowing prospect of the Ti3C2Tx-paper as negative electrode for supercapacitors.Highlights?The free-standing Ti3C2Tx-paper was fabricated by filtration of colloidal solution.?Ti3C2Tx-paper exhibits a high capability rate of 79.7% from 2?mV?s?1to 100?mV?s?1?The ASC is fabricated by using Ti3C2Tx-paper and carbonized filter papers.?The application of the ASC device has been demonstrated by powering a LED.]]>
机译:<![CDATA [ 抽象 ti 3 c 2> 2 T X 是对不对称超级电容器(ASC)的负电极材料。 TI 3> 3 C 2 T X < / CE:inf>纸张通过蚀刻Ti 3 ALC 2 粉末在混合物中HCl和LiF的溶液,然后真空过滤以实现自由静态Ti 3 C 2 t x 纸张。 Ti 3 C 2 T 测量x 纸张,高容量电容为295.4?f?cm ?3 。同时,它从2?mv?s α1到100?mv?s ?1 和长循环寿命,在充电后的初始保留并在电流密度为10℃的初始循环,10°次数为10?a?g ?1 < / ce:sup>。使用TI 3 C 2 T X 纸张作为负电极和碳化滤纸作为正极。 ASC设备的能量密度和功率密度为4.5?WH kg ?1 和1.3?kw?kg ?1 。通过点亮红发二极管来证明该装置的应用,赋予Ti 3 C 2 < / CE:INF> T X 纸张作为超级电容器的负电极。 亮点 < CE:标签>? 自由站立ti 3 c < ce:inf loc =“post”> 2 t x 纸张是通过胶体解决的过滤制造的。 t I 3 C 2 T X 纸张从2?MV的高能力率为79.7%?S ?1 到100?mv?s ?1 通过使用ti 3 C 2 T X 纸张和碳化过滤纸。 通过供电LED来演示ASC设备的应用。< / ce:para> ]]>

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  • 作者单位

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

    Key Laboratory for Photonic and Electronic Bandgap Materials Ministry of Education School of Physics and Electronic Engineering Harbin Normal University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 合金学与各种性质合金;金属材料;
  • 关键词

    MXene; Ti3C2Tx; Negative electrode; Asymmetric supercapacitors device; Volumetric capacitance; Cycling stability;

    机译:MXENE;TI3C2TX;负电极;不对称超级电容器装置;体积电容;循环稳定性;

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