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首页> 外文期刊>RSC Advances >A two-step method for preparing Li4Ti5O_(12)- graphene as an anode material for lithium-ion hybrid capacitors
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A two-step method for preparing Li4Ti5O_(12)- graphene as an anode material for lithium-ion hybrid capacitors

机译:一种制备Li4Ti5O_(12) - 石墨烯作为锂离子混合电容器的阳极材料的两步方法

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摘要

Lithium-ion hybrid capacitors (LICs) are expected to fill the gap between lithium-ion batteries and electrochemical supercapacitors. In this paper, we synthesize Li4Ti5O12-graphene (LTO-G) by a two- step method and use it as the anode material in AC/LTO-G Li-ion hybrid capacitors. The LTO-G composite prepared by the two-step method shows the best electrochemical properties in various ways, and delivers a high specific capacity of 194 mA h g~(-1) at 0.1C, and 90 mA h g~(-1) at 28.6C. The AC/LTO-G capacitors can perform well between 1 and 2.5 V, and they deliver a reversible capacity of 80 mA h g~(-1) at 0.1C. The energy density based on the total active material for these capacitors is 15 W h kg~(-1) at 4000 Wkg~(-1) , and 30 W h kg~(-1) at 1000 W kg~(-1) . After 10 000 cycles, these capacitors still deliver an energy density higher than 22 W h kg~(-1) at 1000 W kg~(-1) . The highest energy density based the total mass of the device is 6.6 W h kg~(-1) and there is still much room for improvement, indicating that the LTO-G composite is a promising candidate anode material for Li-ion hybrid capacitors.
机译:预计锂离子混合电容器(LIC)将填充锂离子电池和电化学超级电容器之间的间隙。在本文中,通过两步方法合成Li4Ti5O12-石墨烯(LTO-G),并用作AC / LTO-G锂离子混合电容器中的阳极材料。通过两步方法制备的LTO-G复合材料以各种方式显示出最佳的电化学性质,并在0.1℃下提供194 mA Hg〜(-1)的高比容量,90 ma Hg〜(-1) 28.6c。 AC / LTO-G电容器可以在1到2.5V之间进行良好,它们在0.1℃下提供80 ma H G〜(-1)的可逆容量。基于这些电容器的总活性材料的能量密度为4000WKG〜(-1)的15WH kg〜(-1),以及在1000W kg〜(-1)的30 w h kg〜(-1) 。在10 000次循环之后,这些电容器仍然在1000W kg〜(-1)的高于22 w h kg〜(-1)的能量密度。基于最高能量密度的装置的总质量为6.6WH kg〜(-1),并且仍然有很多改进的空间,表明LTO-G复合材料是锂离子混合电容器的有希望的候选阳极材料。

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  • 来源
    《RSC Advances》 |2015年第114期|共8页
  • 作者单位

    Key Laboratory of Applied Superconductivity Institute of Electrical Engineering Chinese Academy of Sciences Beijing 100190 PR China.;

    Key Laboratory of Applied Superconductivity Institute of Electrical Engineering Chinese Academy of Sciences Beijing 100190 PR China.;

    Key Laboratory of Applied Superconductivity Institute of Electrical Engineering Chinese Academy of Sciences Beijing 100190 PR China.;

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