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首页> 外文期刊>Advanced Functional Materials >Hierarchical Free-Standing Carbon-Nanotube Paper Electrodes with Ultrahigh Sulfur-Loading for Lithium-Sulfur Batteries
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Hierarchical Free-Standing Carbon-Nanotube Paper Electrodes with Ultrahigh Sulfur-Loading for Lithium-Sulfur Batteries

机译:锂硫电池超高硫负荷分层式自立式碳纳米管纸电极

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摘要

The rational combination of conductive nanocarbon with sulfur leads to the formation of composite cathodes that can take full advantage of each building block; this is an effective way to construct cathode materials for lithium-sulfur (Li-S) batteries with high energy density. Generally, the areal sulfur-loading amount is less than 2.0 mg cm~(-2), resulting in a low areal capacity far below the acceptable value for practical applications. In this contribution, a hierarchical free-standing carbon nanotube (CNT)-S paper electrode with an ultrahigh sulfur-loading of 6.3 mg cm~(-2) is fabricated using a facile bottom-up strategy. In the CNT-S paper electrode, short multi-walled CNTs are employed as the short-range electrical conductive framework for sulfur accommodation, while the super-long CNTs serve as both the long-range conductive network and the intercrossed mechanical scaffold. An initial discharge capacity of 6.2 mA·h cm~(-2) (995 mA·h g~(-1)), a 60% utilization of sulfur, and a slow cyclic fading rate of 0.20%/cycle within the initial 150 cycles at a low current density of 0.05 C are achieved. The areal capacity can be further increased to 15.1 mA·h cm~(-2) by stacking three CNT-S paper electrodes-resulting in an areal sulfur-loading of 17.3 mg cm~(-2)-for the cathode of a Li-S cell. The as-obtained free-standing paper electrode are of low cost and provide high energy density, making them promising for flexible electronic devices based on Li-S batteries.
机译:导电纳米碳与硫的合理结合导致形成复合阴极,这些阴极可充分利用每个结构单元;这是构造具有高能量密度的锂硫(Li-S)电池正极材料的有效方法。通常,面硫装载量小于2.0mg cm·(-2),导致低的面容,远低于实际应用的可接受值。在此贡献中,使用简便的自下而上策略制造了具有6.3 mg cm〜(-2)的超高硫负载的分层式自立式碳纳米管(CNT)-S纸电极。在CNT-S纸电极中,短的多壁CNT被用作容纳硫的短程导电框架,而超长的CNT既是长程导电网络又是交叉的机械支架。最初的150次循环的初始放电容量为6.2 mA·h cm〜(-2)(995 mA·hg〜(-1)),硫的利用率为60%,慢循环衰落率为0.20%/循环在低电流密度下达到0.05C。通过堆叠三个CNT-S纸电极,可将面积容量进一步提高到15.1 mA·h cm〜(-2),这导致Li阴极的面积硫负载为17.3 mg cm〜(-2)。 -S细胞。如此获得的自立式纸电极成本低并且提供高能量密度,使得它们有望用于基于Li-S电池的柔性电子设备。

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  • 来源
    《Advanced Functional Materials》 |2014年第39期|6105-6112|共8页
  • 作者单位

    Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical Engineering Tsinghua University Beijing 100084, PR China;

    Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical Engineering Tsinghua University Beijing 100084, PR China;

    Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical Engineering Tsinghua University Beijing 100084, PR China;

    Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical Engineering Tsinghua University Beijing 100084, PR China;

    Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical Engineering Tsinghua University Beijing 100084, PR China;

    Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical Engineering Tsinghua University Beijing 100084, PR China;

    Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology Department of Chemical Engineering Tsinghua University Beijing 100084, PR China;

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