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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Insights into capacity loss mechanisms of all-solid-state Li-ion batteries with Al anodes
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Insights into capacity loss mechanisms of all-solid-state Li-ion batteries with Al anodes

机译:铝阳极全固态锂离子电池容量损失机理的见解

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The atomistic mechanism for lithiation/delithiation in all-solid-state batteries is still an open question, and the 'holy grail' to engineer devices with extended lifetime. Here, by combining real-time scanning electron microscopy in ultra-high vacuum with electrochemical cycling, we quantify the dynamic degradation of Al anodes in Li-ion all-solid-state batteries, a promising alternative for ultra lightweight devices. We find that AlLi alloy mounds are formed on the top surface of the Al anode and that degradation of battery capacity occurs because of Li trapped in them. Our approach establishes a new platform for probing the real-time degradation of electrodes, and can be expanded to other complex systems, allowing for high throughput characterization of batteries with nanoscale resolution.
机译:全固态电池锂化/​​去锂化的原子机制仍然是一个悬而未决的问题,并且是设计使用寿命更长的设备的“圣杯”。在这里,通过将超高真空中的实时扫描电子显微镜与电化学循环相结合,我们量化了锂离子全固态电池中铝阳极的动态降解,这是超轻型设备的有希望的替代方法。我们发现,AlLi合金堆形成在Al阳极的顶表面上,并且由于锂被困在其中而导致电池容量下降。我们的方法为探测电极的实时退化建立了一个新平台,并且可以扩展到其他复杂系统,从而可以以纳米级分辨率对电池进行高通量表征。

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