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A short review of failure mechanisms of lithium metal and lithiated graphite anodes in liquid electrolyte solutions

机译:液体电解质溶液中锂金属和锂化石墨阳极的失效机理简述

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摘要

Li electrodes in any relevant electrolyte solution (i.e., polar aprotic) are covered by surface films of a very complicated structure. It was found that even in cases where the surface films formed on lithium contain elastomers, or where the lithium metal reactivity is reduced by doping with elements such as N, As, Al, Mg, Ca, etc., it is impossible to achieve sufficient passivation with lithium electrodes and liquid solutions. Passivation is considerably worsened when Li electrodes are operated at high rates (especially at high charging, Li deposition rates). Thus, there is no way that rechargeable Li batteries can compete with Li-ion batteries in any application that requires high charging rates (e.g., in powering portable electronic devices). The electrochemical behavior of lithiated graphite electrodes also depends on passivation phenomena. The surface films formed on lithiated graphite are similar to those formed on Li metal in the same solutions. The volume changes of graphite electrodes during Li insertion-deinsertion are small enough to enable their reasonable passivation in a variety of electrolyte solutions. A critical factor that determines the stability of graphite electrodes is their morphology. It was found that the shape of graphite particles plays a key role in their application as active mass in anodes for Li-ion batteries. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 48]
机译:任何相关的电解质溶液(即极性非质子)中的锂电极都被结构非常复杂的表面膜覆盖。已经发现,即使在锂上形成的表面膜包含弹性体,或者通过掺杂诸如N,As,Al,Mg,Ca等元素而降低锂金属反应性的情况下,也无法获得足够的锂。用锂电极和液体钝化。当Li电极以高速率运行时(尤其是在高充电时,Li沉积速率),钝化会大大恶化。因此,在任何需要高充电速率的应用中(例如,在给便携式电子设备供电时),可充电锂电池都不可能与锂离子电池竞争。锂化石墨电极的电化学行为也取决于钝化现象。在相同溶液中,在锂化石墨上形成的表面膜类似于在Li金属上形成的表面膜。 Li插入-去插入过程中石墨电极的体积变化小到足以使其在各种电解质溶液中合理钝化的程度。决定石墨电极稳定性的关键因素是其形态。已发现石墨颗粒的形状在其作为锂离子电池阳极中的活性物质的应用中起着关键作用。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:48]

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