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Operando Quantification of (De)Lithiation Behavior of Silicon–Graphite Blended Electrodes for Lithium-Ion Batteries

机译:锂离子电池硅-石墨混合电极的(De)锂化行为的操作定量

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Due to the high lithium capacity of silicon, the composite (blended) electrodes containing silicon (Si) and graphite (Gr) particles are attractive alternatives to the all-Gr electrodes used in conventional lithium-ion batteries. In this Communication, the lithiation and delithiation in the Si and Gr particles in a 15 wt% Si composite electrode is quantified for each component using energy dispersive X-ray diffraction. This quantification is important as the components cycle in different potential regimes, and interpretation of cycling behavior is complicated by the potential hysteresis displayed by Si. The lithiation begins with Li alloying with Si; lithiation of Gr occurs at later stages when the potential dips below 0.2 V (all potentials are given vs Li/Li+). In the 0.2-0.01 V range, the relative lithiation of Si and Gr is approximate to 58% and 42%, respectively. During delithiation, Li+ ion extraction occurs preferentially from Gr in the 0.01-0.23 V range and from Si in the 0.23-1.0 V range; that is, the delithiation current is carried sequentially, first by Gr and then by Si. These trends can be used for rational selection of electrochemical cycling windows that limits volumetric expansion in Si particles, thereby extending cell life.
机译:由于硅的高锂容量,包含硅(Si)和石墨(Gr)颗粒的复合(混合)电极是常规锂离子电池中使用的全Gr电极的有吸引力的替代品。在此通讯中,使用能量色散X射线衍射对每种组分中15 wt%Si复合电极中Si和Gr颗粒中的锂化和脱锂进行了定量。由于组分在不同的电势范围内循环,因此这种量化非常重要,而Si所显示的电滞现象使循环行为的解释变得复杂。锂化始于Li与Si合金化;然后,当电位降到0.2 V以下时(所有电位均以Li / Li +给出),Gr的锂化发生在随后的阶段。在0.2-0.01 V范围内,Si和Gr的相对锂化分别约为58%和42%。在脱锂过程中,优先从0.01-0.23 V范围内的Gr和0.23-1.0 V范围内的Si提取Li +离子;也就是说,去磁化电流是依次由Gr承载,然后由Si承载。这些趋势可用于合理选择电化学循环窗口,从而限制Si颗粒的体积膨胀,从而延长电池寿命。

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