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Thick solid electrolyte interphases grown on silicon nanocone anodes during slow cycling and their negative effects on the performance of Li-ion batteries

机译:厚的固体电解质界面上生长在慢骑自行车和硅nanocone阳极他们的性能的负面影响锂离子电池

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摘要

Thickness, homogeneity and coverage of the surface passivation layer on Si anodes for Li-ion batteries have decisive influences on their cyclic performance and coulombic efficiency, but related information is difficult to obtain, especially during cycling. In this work, a well-defined silicon nanocone (SNC) on silicon wafer sample has been fabricated as a model electrode in lithium ion batteries to investigate the growth of surface species on the SNC electrode during cycling using ex situ scanning electronic microscopy. It is observed that an extra 5 mu m thick layer covers the top of the SNCs after 25 cycles at 0.1 C. This top layer has been proven to be a solid electrolyte interphase (SEI) layer by designing a solid lithium battery. It is noticed that the SEI layer is much thinner at a high rate of 1 C. The cyclic performance of the SNCs at 1 C looks much better than that of the same electrode at 0.1 C in the half cell. Our findings clearly demonstrate that the formation of the thick SEI on the naked nanostructured Si anode during low rate cycling is a serious problem for practical applications. An in depth understanding of this problem may provide valuable guidance in designing Si-based anode materials.
机译:厚度、均匀性和表面的报道钝化层硅阳极锂离子电池有决定性的影响循环性能和库仑效率,但是相关信息很难获得,特别是在骑自行车。定义良好的硅nanocone (SNC)硅晶片样品被制作为一个模型在锂离子电池电极进行调查在SNC表面物种的生长使用非原位扫描电极在循环电子显微镜。额外的5μm厚层覆盖的顶部snc 25周期在0.1 c,这个顶层被证明是一种固体电解质界面(SEI)层通过设计一个可靠的锂电池。注意到,SEI层薄得多在一个较高的率1 c的循环性能snc在1 C比看起来好多了相同的电极在半电池的0.1摄氏度。结果清楚地表明,形成厚SEI的赤裸裸的纳米硅在低循环是一个严重的阳极实际应用的问题。对这个问题的理解可能会提供有价值的指导在设计Si-based阳极材料。

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