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金属玻璃纤维织物:一种新型的柔性、超轻量级、3D 锂电子电池集流器。

Metallic Glass-Fiber Fabrics: A New Type of Flexible, Super-Lightweight, and 3D Current Collector for Lithium Batteries.

机构信息

Laboratory for Advanced Interfacial Materials and Devices, School of Fashion and Textiles, The Hong Kong Polytechnic University, Hong Kong SAR, 999077, China.

Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong SAR, 999077, China.

出版信息

Adv Mater. 2023 Jun;35(26):e2211748. doi: 10.1002/adma.202211748. Epub 2023 May 28.

Abstract

Current collectors are indispensable parts that provide electron transport and mechanical support of electrode materials in a battery. Nowadays, thin metal foils made of Cu and Al are used as current collectors of lithium batteries, but they do not contribute to the storage capacity. Therefore, decreasing the weight of current collectors can directly enhance the energy density of a battery. However, limited by the requirements of mechanical strength, it is difficult to reduce the weight of metal foils any further. Herein, a new type of current collectors made of 3D metallic glass-fiber fabrics (MGFs), which shows advantages of super-lightweight (2.9-3.2 mg cm⁻ ), outstanding electrochemical stability for cathodes and anodes of lithium-ion and lithium-metal batteries (LMBs), fire resistance, high strength, and flexibility suitable for roll-to-roll electrode fabrication is reported. The gravimetric energy densities of lithium batteries exhibit improvements of 9-18% by only replacing the metal foils with the MGFs. In addition, MGFs are suitable for the fabrication of flexible batteries. A high-energy-density flexible lithium battery with an outstanding figure of merit of flexible battery (fb ) and flexing stability is demonstrated.

摘要

集流器是电池中提供电子传输和电极材料机械支撑的不可或缺的部分。如今,薄的铜和铝金属箔被用作锂电池的集流器,但它们对存储容量没有贡献。因此,降低集流器的重量可以直接提高电池的能量密度。然而,由于机械强度的要求,进一步降低金属箔的重量是很困难的。本文报道了一种由 3D 金属玻璃纤维织物(MGFs)制成的新型集流器,它具有超轻重量(2.9-3.2mg cm⁻³)、出色的电化学稳定性,适用于锂离子电池和锂金属电池(LMBs)的正负极、耐燃性、高强度和柔韧性,适合卷对卷电极制造。通过仅用 MGFs 替代金属箔,锂电池的重量能量密度提高了 9-18%。此外,MGFs 适用于制造柔性电池。本文展示了一种具有高能量密度的柔性锂电池,其具有出色的柔性电池(fb)和弯曲稳定性的优异值。

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