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Effect of particle morphology on lithium intercalation rates in natural graphite

机译:颗粒形态对天然石墨中锂嵌入速率的影响

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The intercalation rate of Li~+-ions in flake natural graphite (two-dimensional) with particle size from 2 to 40μm and sphere-like graphite (three-dimensional), 12 to 40μm in particle size, was investigated. The amount of Li~+ ions that intercalate at different rates was determined from measurement of the reversible capacity during de-intercalation in 1 M LiClO_4/1:1 (volume ratio) ethylene carbonate―dimethyl carbonate. The key issues in this study are the role of the particle size and fraction of edge sites on the rate of intercalation and de-intercalation of Li~+ ions. At low specific current (15.5mA/g carbon), the composition of lithiated graphite approaches the theoretical value, x = 1 in Li_xC_6, except for the natural graphite with the largest particle size. However, x decreases with an increase in specific current for all particle sizes. This trend suggests that slow solid-state diffusion of Li~+ ions limits the intercalation capacity in graphite. The 3D natural graphite with a particle size of 12 μm may provide the optimum combination of reversible capacity and irreversible capacity loss in the electrolyte and discharge rates used in this study.
机译:研究了Li〜+离子在粒径为2〜40μm的片状天然石墨和粒径为12〜40μm的球形石墨(三维)中的嵌入率。根据在1 M LiClO_4 / 1:1(体积比)碳酸亚乙酯-碳酸二甲酯中脱嵌过程中可逆容量的测量,确定以不同速率插入的Li〜+离子的量。这项研究中的关键问题是粒径和边缘部位的分数对Li〜+离子的嵌入和脱嵌速率的影响。在低比电流(15.5mA / g碳)下,锂化石墨的组成接近理论值,在Li_xC_6中x = 1,但最大的天然石墨除外。然而,对于所有粒径,x都随着比电流的增加而减小。这一趋势表明,Li〜+离子的缓慢固态扩散限制了石墨中的嵌入能力。粒径为12μm的3D天然石墨可提供可逆容量和不可逆容量损失的最佳组合,该容量可用于本研究中的电解质和放电速率。

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