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新型高比能纳米结构 Li2S/硅可充锂电池。

New nanostructured Li2S/silicon rechargeable battery with high specific energy.

机构信息

Department of Materials Science and Engineering, Stanford University, Stanford, California 94305, USA.

出版信息

Nano Lett. 2010 Apr 14;10(4):1486-91. doi: 10.1021/nl100504q.

Abstract

Rechargeable lithium ion batteries are important energy storage devices; however, the specific energy of existing lithium ion batteries is still insufficient for many applications due to the limited specific charge capacity of the electrode materials. The recent development of sulfur/mesoporous carbon nanocomposite cathodes represents a particularly exciting advance, but in full battery cells, sulfur-based cathodes have to be paired with metallic lithium anodes as the lithium source, which can result in serious safety issues. Here we report a novel lithium metal-free battery consisting of a Li(2)S/mesoporous carbon composite cathode and a silicon nanowire anode. This new battery yields a theoretical specific energy of 1550 Wh kg(-1), which is four times that of the theoretical specific energy of existing lithium-ion batteries based on LiCoO(2) cathodes and graphite anodes (approximately 410 Wh kg(-1)). The nanostructured design of both electrodes assists in overcoming the issues associated with using sulfur compounds and silicon in lithium-ion batteries, including poor electrical conductivity, significant structural changes, and volume expansion. We have experimentally realized an initial discharge specific energy of 630 Wh kg(-1) based on the mass of the active electrode materials.

摘要

可充电锂离子电池是重要的储能设备;然而,由于电极材料的比电荷容量有限,现有锂离子电池的比能量仍然不足,无法满足许多应用的需求。最近硫/介孔碳纳米复合材料正极的发展代表了一个特别令人兴奋的进展,但在全电池中,基于硫的正极必须与金属锂负极配对作为锂源,这可能会导致严重的安全问题。在这里,我们报告了一种由 Li(2)S/介孔碳复合材料正极和硅纳米线负极组成的新型无锂金属电池。这种新电池的理论比能量为 1550 Wh kg(-1),是基于 LiCoO(2)正极和石墨负极的现有锂离子电池理论比能量(约 410 Wh kg(-1))的四倍。两个电极的纳米结构设计有助于克服在锂离子电池中使用硫化合物和硅所带来的问题,包括导电性差、结构变化显著和体积膨胀。我们已经通过实验实现了基于活性电极材料质量的 630 Wh kg(-1)的初始放电比能量。

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