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首页> 外文期刊>Electrochimica Acta >Calendar-life versus cycle-life aging of lithium-ion cells with silicon-graphite composite electrodes
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Calendar-life versus cycle-life aging of lithium-ion cells with silicon-graphite composite electrodes

机译:用硅 - 石墨复合电极与锂离子电池的日历 - 寿命与循环寿命老化

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The use of blended silicon-graphite (Si-Gr) negative electrodes increases the energy density of lithiumion cells over those containing only graphite (Gr) electrodes. However, volume changes in the Si particles that occur during cycling cause deterioration of the solid-electrolyte interphase (SEI) layer on the particles resulting in further electrolyte reduction that immobilizes Li+ ions and, therefore, capacity fade. Because the volume changes are not expected to occur during a potentiostatic hold (referred to as calendar-life aging), by comparison of cycle-life and calendar-life aged cells one can expect to assess the role of volume changes in the deterioration of cell performance. To this end, cells with Si-Gr and Gr negative electrodes (and Li-1.03(Ni0.5Co0.2Mn0.3)(0.97)O-2 containing positive electrodes) were assembled, tested, and compared using cycle-life and calendar-life aging protocols. As expected, the capacity loss of the cycle-life aged cells was higher than that of the calendar-life aged cells. However, the measurable capacity loss for the calendar-life aged cells indicates continued immobilization of Li+ ions. Furthermore, electrolytes extracted from the calendar-life aged cells showed more LiPF6 hydrolysis products than those extracted from the cycle-life aged cells. We discuss possible mechanistic causes for the observed aging behaviors in this article. (C) 2018 Elsevier Ltd. All rights reserved.
机译:混合硅 - 石墨(Si-GR)负极的使用增加了仅含有石墨(GR)电极的锂细胞的能量密度。然而,在循环期间发生的Si颗粒中的体积变化导致颗粒上的固体电解质相互异位(SEI)层的劣化导致进一步的电解质减少,使得Li +离子固定,因此容量衰落。因为在恒弓(称为日历 - 寿命)期间,预计产量变化是在循环寿命和日历 - 寿命的比较期间发生的,所以可以期望评估体积变化在细胞劣化中的作用表现。为此,组装,测试,并使用循环寿命和日历进行组装,使用循环寿命和比较,用Si-Gr和Gr负电极(和Li-1.03(Ni0.5Co0.2Mn0.3)(0.97)O-2)(0.97)O-2)(0.97)o-2的细胞 - 生物老化协议。如预期的那样,循环寿命老年细胞的容量损失高于日历 - 寿命老年细胞的容量。然而,日历寿命老年细胞的可测量容量损失表明Li +离子的继续固定。此外,从日历 - 寿命老年细胞中提取的电解质显示出比从循环 - 寿命老年细胞中提取的那些脂肪6水解产物。我们讨论了本文中观察到的老化行为的机制原因。 (c)2018年elestvier有限公司保留所有权利。

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