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Pre‐Lithiation Strategies for Next‐Generation Practical Lithium‐Ion Batteries

机译:下一代实用锂离子电池的岩性溶液策略

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摘要

Next‐generation Li‐ion batteries (LIBs) with higher energy density adopt some novel anode materials, which generally have the potential to exhibit higher capacity, superior rate performance as well as better cycling durability than conventional graphite anode, while on the other hand always suffer from larger active lithium loss (ALL) in the first several cycles. During the last two decades, various pre‐lithiation strategies are developed to mitigate the initial ALL by presetting the extra Li sources to effectively improve the first Coulombic efficiency and thus achieve higher energy density as well as better cyclability. In this progress report, the origin of the huge initial ALL of the anode and its effect on the performance of full cells are first illustrated in theory. Then, various pre‐lithiation strategies to resolve these issues are summarized, classified, and compared in detail. Moreover, the research progress of pre‐lithiation strategies for the representative electrochemical systems are carefully reviewed. Finally, the current challenges and future perspectives are particularly analyzed and outlooked. This progress report aims to bring up new insights to reassess the significance of pre‐lithiation strategies and offer a guideline for the research directions tailored for different applications based on the proposed pre‐lithiation strategies summaries and comparisons.
机译:具有较高能量密度的下一代锂离子电池(Libs)采用了一些新颖的阳极材料,这通常具有比传统石墨阳极更高的容量,优异的速率性能以及更好的循环耐久性,而另一方面始终在前几个循环中遭受较大的活性锂损失(全部)。在过去的二十年中,通过预设额外的锂来源来制定各种预锂化策略来减轻最初的所有策略,以有效提高第一个库仑效率,从而实现更高的能量密度以及更好的可靠性。在此进度报告中,首先理论上首先说明了巨大初始初始阳极的起源及其对完整细胞性能的影响。然后,概述了各种解析这些问题的思考策略,分类,分类和比较。此外,仔细审查了代表电化学系统的锂锂化策略的研究进展。最后,特别分析和未来的挑战和未来的观点。此进度报告旨在提出新的见解,以重新评估锂思级战略的重要性,并根据拟议的思考前策略摘要和比较,为不同应用程序量身定制的研究方向提供指导。

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