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Reversible and High-Capacity Nanostructured Electrode Materials for Li-Ion Batteries

机译:用于锂离子电池的可逆和大容量纳米结构电极材料

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摘要

Reversible nanostructured electrode materials are at the center of research relating to rechargeable lithium batteries, which require high power, high capacity, and high safety. The higher capacities and higher rate capabilities for the nanostructured electrode materials than for the bulk counterparts can be attributed to the higher surface area, which reduces the overpotential and allows faster reaction kinetics at the electrode surface. These electrochemical enhancements can lead to versatile potential applications of the batteries and can provide breakthroughs for the currently limited power suppliers of mobile electronics. This Feature Article describes recent research advances on nanostructured cathode and anode materials, such as metals, metal oxides, metal phosphides and LiCoO_2, LiNi_(1-x)M_xO_2 with zero-, one-, two-, and three-dimensional morphologies.
机译:可逆的纳米结构电极材料是与可充电锂电池有关的研究中心,可充电锂电池需要高功率,高容量和高安全性。纳米结构的电极材料比本体的材料具有更高的容量和更高的速率能力,这可以归因于更大的表面积,这减少了过电势并允许电极表面更快的反应动力学。这些电化学上的增强可以导致电池的多种潜在应用,并且可以为当前有限的移动电子设备供电商提供突破。这篇专题文章介绍了纳米结构阴极和阳极材料的最新研究进展,例如金属,金属氧化物,金属磷化物和LiCoO_2,具有零维,一维,二维和三维形态的LiNi_(1-x)M_xO_2。

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  • 来源
    《Advanced Functional Materials》 |2009年第10期|1497-1514|共18页
  • 作者

    Min Gyu Kim; Jaephil Cho;

  • 作者单位

    Beamline Research Division Pohang Accelerator Laboratory Pohang 790-784 (Korea);

    Division of Energy Engineering Ulsan National Institute of Science & Technology Ulsan 689-805 (Korea);

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  • 正文语种 eng
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