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首页> 外文期刊>Electrochimica Acta >Optimization of Charging Strategy by Prevention of Lithium Deposition on Anodes in high-energy Lithium-ion Batteries - Electrochemical Experiments
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Optimization of Charging Strategy by Prevention of Lithium Deposition on Anodes in high-energy Lithium-ion Batteries - Electrochemical Experiments

机译:通过防止高能锂离子电池阳极上的锂沉积来优化充电策略-电化学实验

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The study evaluates the capacity fade of commercial 3.25 Ah 18650-type cells with NCA cathodes and graphite anodes quantitatively for different temperatures and charging strategies. For standard constant current/constant voltage (CC-CV) charging, the aging rate for cells cycled at 0.5C is increased with decreasing temperature in the range of 25 degrees C to 0 degrees C. Interestingly, no accelerated aging is observed for CC-CV charging in the temperature range of 25 degrees C to 60 degrees C at 0.5C. The observed behavior indicates lithium deposition on anodes for temperatures up to similar to 25 degrees C and is further investigated by reconstruction of anode and cathode from the commercial 18650-type cells into full cells with an additional lithium metal reference electrode. The reconstruction method is scrutinized regarding its validity. Measurements with the reconstructed cells at 25 degrees C reveal the quantitative dependency of the anode potential vs. Li/Li+ from the charge C-rate and cell voltage. This allows deriving charging strategies involving strictly positive anode potentials to avoid lithium deposition and preventing the corresponding capacity fade. (C) 2015 Published by Elsevier Ltd.
机译:这项研究定量评估了带有NCA阴极和石墨阳极的商业3.25 Ah 18650型电池在不同温度和充电策略下的容量衰减。对于标准的恒定电流/恒定电压(CC-CV)充电,以0.5C循环的电池的老化速率随着温度在25摄氏度至0摄氏度范围内的降低而增加。有趣的是,没有观察到CC-C的加速老化CV在0.5C下在25摄氏度至60摄氏度的温度范围内充电。观察到的行为表明温度高达25摄氏度时锂在阳极上的沉积,并通过将阳极和阴极从商业18650型电池重构为带有额外锂金属参比电极的完整电池进行了进一步研究。审查重建方法的有效性。在25摄氏度下用重建的电池进行的测量揭示了电荷C速率和电池电压对阳极电势对Li / Li +的定量依赖性。这允许推导包含严格正阳极电位的充电策略,以避免锂沉积并防止相应的容量衰减。 (C)2015由Elsevier Ltd.出版

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