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Li-Rich Li-Si Alloy As A Lithium-Containing Negative Electrode Material Towards High Energy Lithium-Ion Batteries

机译:富锂锂硅合金作为高能锂离子电池的含锂负极材料

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摘要

Lithium-ion batteries (LIBs) are generally constructed by lithium-including positive electrode materials, such as LiCoO2, and lithium-free negative electrode materials, such as graphite. Recently, lithium-free positive electrode materials, such as sulfur, are gathering great attention from their very high capacities, thereby significantly increasing the energy density of LIBs. Though the lithium-free materials need to be combined with lithium-containing negative electrode materials, the latter has not been well developed yet. In this work, the feasibility of Li-rich Li-Si alloy is examined as a lithium-containing negative electrode material. Li-rich Li-Si alloy is prepared by the melt-solidification of Li and Si metals with the composition of Li21Si5. By repeating delithiation/lithiation cycles, Li-Si particles turn into porous structure, whereas the original particle size remains unchanged. Since Li-Si is free from severe constriction/expansion upon delithiation/lithiation, it shows much better cyclability than Si. The feasibility of the Li-Si alloy is further examined by constructing a full-cell together with a lithium-free positive electrode. Though Li-Si alloy is too active to be mixed with binder polymers, the coating with carbon-black powder by physical mixing is found to prevent the undesirable reactions of Li-Si alloy with binder polymers, and thus enables the construction of a more practical electrochemical cell.
机译:锂离子电池(LIB)通常由含锂的正极材料(例如LiCoO2)和无锂的负极材料(例如石墨)构成。近来,无锂正极材料,例如硫,由于其极高的容量而引起了极大的关注,从而显着提高了LIB的能量密度。尽管无锂材料需要与含锂负极材料结合使用,但是后者还没有得到很好的开发。在这项工作中,研究了富锂的Li-Si合金作为含锂负极材料的可行性。富锂的Li-Si合金是通过熔融熔化具有Li21Si5组成的Li和Si金属而制备的。通过重复去锂/锂化循环,Li-Si颗粒变成多孔结构,而原始颗粒尺寸保持不变。由于Li-Si在脱锂/锂化时没有严重的收缩/膨胀,因此其可循环性比Si好得多。通过与无锂正极一起构建全电池,进一步检验了Li-Si合金的可行性。尽管Li-Si合金的活性太强,无法与粘合剂聚合物混合,但是发现通过物理混合涂上炭黑粉末可以防止Li-Si合金与粘合剂聚合物发生不良反应,从而可以实现更实用的结构。电化学电池。

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