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Free-standing single-walled carbon nanotube/SnO2 anode paper for flexible lithium-ion batteries

机译:用于柔性锂离子电池的独立式单壁碳纳米管/ SnO2阳极纸

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摘要

Free-standingsingle-walledcarbonnanotube/SnO2 (SWCNT/SnO2) anodepaper was prepared by vacuum filtration of SWCNT/SnO2 hybrid material which was synthesized by the polyol method. From field emission scanning electron microscopy and transmission electron microscopy, the CNTs form a three-dimensional nanoporous network, in which ultra-fine SnO2 nanoparticles, which had crystallite sizes of less than 5 nm, were distributed, predominately as groups of nanoparticles on the surfaces of singlewalled CNT bundles. Electrochemical measurements demonstrated that the anodepaper with 34 wt.% SnO2 had excellent cyclic retention, with the high specific capacity of 454 mAh g−1 beyond 100 cycles at a current density of 25 mA g−1, much higher than that of the corresponding pristine CNT paper. The SWCNTs could act as a flexible mechanical support for strain release, offering an efficient electrically conducting channel, while the nanosized SnO2 provides the high capacity. The SWCNT/SnO2 flexible electrodes can be bent to extremely small radii of curvature and still function well, despite a marginal decrease in the conductivity of the cell. The electrochemical response is maintained in the initial and further cycling process. Such capabilities demonstrate that this model hold great promise for applications requiring flexible and bendable Li-ion batteries.
机译:通过对多元醇法合成的SWCNT / SnO2杂化材料进行真空过滤,制备了独立式单壁碳纳米管/ SnO2(SWCNT / SnO2)阳极纸。从场发射扫描电子显微镜和透射电子显微镜观察,CNT形成三维纳米多孔网络,其中分布了微晶尺寸小于5 nm的超细SnO2纳米颗粒,主要是表面上的纳米颗粒群单壁碳纳米管束。电化学测量表明,含34 wt。%SnO2的阳极纸具有出色的循环保持性,在25 mA g-1的电流密度下,经过100次循环后具有454 mAh g-1的高比容量,远高于相应的原始电池碳纳米管纸。 SWCNT可以作为应变释放的灵活机械支撑,提供有效的导电通道,而纳米级的SnO2提供高容量。尽管电池的电导率略有下降,SWCNT / SnO2柔性电极仍可以弯曲至极小的曲率半径,并且仍然可以正常工作。在初始和进一步的循环过程中保持电化学响应。这种能力证明,该型号对于需要柔性和可弯曲锂离子电池的应用具有广阔的前景。

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