高安全性、速率能力和能量密度锂金属电池的定向结构。

IF 14.3 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY Advanced Science Pub Date : 2024-07-09 DOI:10.1002/advs.202403797
Kaiming Wang, Aaron Jue Kang Tieu, Haowen Wu, Fei Shen, Xiaogang Han, Stefan Adams
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引用次数: 0

摘要

近年来,锂金属电池(LMB)已成为高密度储能系统中极具潜力的候选产品。尽管锂金属电池潜力巨大,但在优化能量密度、速率能力和操作安全性时,却出现了相互制约的问题,这极大地阻碍了锂金属电池的商业化。在 LMB 中利用取向结构似乎是一种很有前景的策略,可以解决三个关键的性能障碍:1)高表面负载时活性材料利用效率低;2)在高速循环下容易形成锂枝晶并损坏界面;3)高安全性 LMB 中固态电解质离子电导率低。本综述旨在全面介绍取向结构的概念,提供量化取向程度的标准,并阐明其对材料和器件性能的系统影响。此外,还提出了定向结构的详细分类,为 LMB 的设计提供更精确的指导。本综述还全面总结了定向结构的制备技术,并深入探讨了这些技术可提高 LMB 的能量密度、速率能力和安全性的机制。最后,还探讨了定向结构在 LMB 中的潜在应用以及该领域亟待解决的关键挑战。
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Oriented Structures for High Safety, Rate Capability, and Energy Density Lithium Metal Batteries.

Lithium metal batteries (LMBs) have emerged in recent years as highly promising candidates for high-density energy storage systems. Despite their immense potential, mutual constraints arise when optimizing energy density, rate capability, and operational safety, which greatly hinder the commercialization of LMBs. The utilization of oriented structures in LMBs appears as a promising strategy to address three key performance barriers: 1) low efficiency of active material utilization at high surface loading, 2) easy formation of Li dendrites and damage to interfaces under high-rate cycling, and 3) low ionic conductivity of solid-state electrolytes in high safety LMBs. This review aims to holistically introduce the concept of oriented structures, provide criteria for quantifying the degree of orientation, and elucidate their systematic effects on the properties of materials and devices. Furthermore, a detailed categorization of oriented structures is proposed to offer more precise guidance for the design of LMBs. This review also provides a comprehensive summary of preparation techniques for oriented structures and delves into the mechanisms by which these can enhance the energy density, rate capability, and safety of LMBs. Finally, potential applications of oriented structures in LMBs and the crucial challenges that need to be addressed in this field are explored.

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来源期刊
Advanced Science
Advanced Science CHEMISTRY, MULTIDISCIPLINARYNANOSCIENCE &-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
18.90
自引率
2.60%
发文量
1602
审稿时长
1.9 months
期刊介绍: Advanced Science is a prestigious open access journal that focuses on interdisciplinary research in materials science, physics, chemistry, medical and life sciences, and engineering. The journal aims to promote cutting-edge research by employing a rigorous and impartial review process. It is committed to presenting research articles with the highest quality production standards, ensuring maximum accessibility of top scientific findings. With its vibrant and innovative publication platform, Advanced Science seeks to revolutionize the dissemination and organization of scientific knowledge.
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