Reveal the capacity loss of lithium metal batteries through analytical techniques

InfoScience Pub Date : 2024-08-28 DOI:10.1002/inc2.12006
Cong Ma, Ke Yue, Yu Xie, Yujing Liu, Xinyong Tao, Jun Lu
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Abstract

High energy density and stable long cycle are the basic requirements for an ideal battery. At present, lithium (Li) metal anode is regarded as one of the most promising anode materials, but it still faces major problems in terms of capacity fading and safe and stable long-term cycle. The reason for the continuous fading of Li anode capacity is mainly due to the loss of active Li source, and the loss of Li source is mainly due to the continuous generation of dead Li. At the same time, the unstable interface and dendrite growth of Li anodes during the Li plating/delithiation process eventually lead to battery safety issues. In fact, recent studies have shown that the disordered expansion of dendrites is the main reason for the infinite generation of dead Li. Therefore, here we take different detection techniques as clues, review the exploration process of qualitative and quantitative research on the source and mechanism of Li capacity loss, and summarize the strategies to reduce dead Li generation and capacity fading by inhibiting dendrite formation. In particular, we give suggestions on the development of advanced testing methods on how to further study the problem of dead Li, and also give relevant strategy suggestions on how to completely solve the problem of capacity loss in the future, with the main goal of suppressing dendrites.

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通过分析技术揭示锂金属电池的容量损失
高能量密度和稳定的长循环是理想电池的基本要求。目前,锂金属负极被认为是最有前途的负极材料之一,但其在容量衰减和安全稳定的长期循环等方面仍面临较大的问题。锂阳极容量不断衰减的原因主要是由于有源锂的损耗,而锂源的损耗主要是由于死锂的不断产生。同时,在镀锂/去锂过程中,锂阳极的界面不稳定和枝晶生长最终导致电池安全问题。事实上,最近的研究表明,树突的无序膨胀是死李无限产生的主要原因。因此,本文以不同的检测技术为线索,回顾了锂容量损失的来源和机制的定性和定量研究的探索过程,总结了通过抑制枝晶形成来减少死锂生成和容量衰退的策略。特别是,我们就如何进一步研究死李问题提出了先进测试方法的发展建议,并就未来如何彻底解决容量损失问题给出了相关的策略建议,主要目标是抑制树突。
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