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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A copper-clad lithiophilic current collector for dendrite-free lithium metal anodes
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A copper-clad lithiophilic current collector for dendrite-free lithium metal anodes

机译:用于树突式锂金属阳极的铜包层锂锂硅基集电器

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摘要

Lithium (Li) metal has been considered as one of the most attractive anode materials of Li batteries due to its high theoretical capacity and low electrochemical potential. However, dendrite formation and large volume change during battery operation hinder its commercialization. Here, we created a three-dimensional (3D) light-weight and mechanically flexible copper-clad carbon framework (CuCF) as a lithiophilic current collector. The CuCF can be made by scalable pyrolysis of a melamine-formaldehyde foam (MF) followed by copper electroplating. The carbon framework (CF) without copper cladding has a lower conductivity (4.32 x 10(-4) S cm(-1)) and fewer non-uniform lithium nucleation sites, leading to lithium dendrite growth during plating/stripping. By surface engineering with copper-cladding, the CuCF has a much higher conductivity (1.38 x 10(-2) S cm(-1)) and more Li nucleation sites which allow a uniform and smooth Li deposition. Moreover, the excellent mechanical flexibility and enlarged surface area of the CuCF current collector can accommodate volume expansion and reduce local current density. As a result, a dendrite-free Li metal anode is achieved with a high coulombic efficiency of 99.5% even after 300 plating/stripping cycles (similar to 1200 hours). Significantly, it can last for more than 170 cycles at a high current of 5 mA cm(-2) in a symmetric cell cycling test. Furthermore, a Li/lithium iron phosphate (LFP) cell exhibits a long cycling life at a high current of 1C.
机译:由于其高理论能力和低电化学潜力,锂(Li)金属被认为是Li电池最具吸引力的阳极材料之一。然而,电池操作期间的树突式形成和大量变化阻碍了其商业化。在这里,我们创建了一种三维(3D)轻量级和机械柔性铜包覆碳框架(CUCF),作为锂磷灰集电器。 CUCF可以通过可缩放的甲醛泡沫(MF)的可伸缩热解,然后是铜电镀。没有铜包层的碳骨架(CF)具有较低的导电性(4.32×10(-4)Cm(-1))和更少的非均匀锂成核位点,导致镀层/汽提时锂枝晶生长。通过用铜包层的表面工程,CUCF具有更高的电导率(1.38×10( - 2)厘米(-1)),允许均匀和平滑的LI沉积的更多Li成核位点。此外,CUCF集电器的优异机械柔性和放大的表面积可以适应体积膨胀并降低局部电流密度。结果,即使在300镀/汽提循环(类似于1200小时)后,高库仑效率为99.5%的高水库效率,均达到树突式的锂金属阳极。值得注意的是,在对称细胞循环试验中,它可以在5 mA cm(-2)的高电流下持续超过170个循环。此外,Li /锂磷酸铁(LFP)细胞在1C的高电流下表现出长的循环寿命。

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  • 作者单位

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    NASA Glenn Res Ctr Cleveland OH 44135 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

    South Dakota State Univ Dept Elect Engn &

    Comp Sci Ctr Adv Photovolta &

    Sustainable Energy Brookings SD 57007 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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