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Understanding capacity fade in silicon based electrodes for lithium ion batteries using three electrode cells and upper cut-off voltage studies

机译:使用三个电极单元和上限电压研究了解锂离子电池硅基电极的容量衰减

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摘要

Commercial Li-ion batteries are typically cycled between 3.0 and 4.2 V. These voltages limits are chosen based on the characteristics of the cathode (e.g. lithium cobalt oxide) and anode (e.g. graphite). When alternative anode/cathode chemistries are studied the same cut-off voltages are often, mistakenly, used. Silicon (Si) based anodes are widely studied as a high capacity alternative to graphite for Lithium-ion batteries. When silicon-based anodes are paired with high capacity cathodes (e.g. Lithium Nickel Cobalt Aluminium Oxide; NCA) the cell typically suffers from rapid capacity fade. The purpose of this communication is to understand how the choice of upper cut-off voltage affects cell performance in Si/ NCA cells. A careful study of three-electrode cell data will show that capacity fade in Si/NCA cells is due to an ever-evolving silicon voltage profile that pushes the upper voltage at the cathode to >4.4 V (vs. Li/Liþ). This behaviour initially improves cycle efficiency, due to liberation of new lithium, but ultimately reduces cycling efficiency, resulting in rapid capacity fade.
机译:商用锂离子电池通常在3.0至4.2 V之间循环。这些电压极限是根据阴极(例如钴酸锂)和阳极(例如石墨)的特性选择的。当研究替代的阳极/阴极化学时,经常会错误地使用相同的截止电压。广泛研究了基于硅(Si)的阳极,作为锂离子电池的石墨的高容量替代品。当将硅基阳极与高容量阴极(例如锂镍钴铝氧化物; NCA)配对时,电池通常会遭受快速的容量衰减。交流的目的是了解上截止电压的选择如何影响Si / NCA电池的电池性能。对三电极电池数据的仔细研究表明,Si / NCA电池的容量衰减是由于不断发展的硅电压曲线所致,该电压曲线将阴极的最高电压推至> 4.4 V(vs。Li / Li 3)。由于释放出新的锂,此行为最初可提高循环效率,但最终会降低循环效率,从而导致容量快速衰减。

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