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可充电锂硫电池阴极材料的最新进展

Recent advances in cathode materials for rechargeable lithium-sulfur batteries.

作者信息

Li Fang, Liu Quanhui, Hu Jiawen, Feng Yuezhan, He Pengbin, Ma Jianmin

机构信息

School of Physics and Electronics, Hunan University, Changsha 410082, China.

State Key Laboratory for Chemo/Biosensing and Chemometrics, and College of Chemistry and Chemical Engineering, Hunan University, Changsha, China.

出版信息

Nanoscale. 2019 Sep 7;11(33):15418-15439. doi: 10.1039/c9nr04415a. Epub 2019 Aug 13.

Abstract

Lithium-sulfur batteries (Li-S) are regarded as a promising candidate for next-generation energy storage systems due to their high specific capacity (1675 mA h g) and energy density (2600 W h kg) as well as the abundance, safety and low cost of sulfur materials. However, many disadvantages hinder the further development of Li-S batteries, such as the insulating nature of the active materials, the dissolution of intermediate products, large volume expansion and safety concerns related to metal lithium anodes. During the past decade, tremendous efforts have been made in the design and synthesis of electrode materials. In this review, we briefly discuss the electrochemical mechanism of Li-S batteries and their practical problems. Then, we systematically summarize the current strategies for designing cathode materials with stable and long cycling performance, including sulfur cathodes and LiS cathodes; subsequently, the current development of solid-state electrolytes and protective strategies for lithium metal anodes are briefly discussed. Finally, the current challenges and future perspectives of Li-S batteries are presented.

摘要

锂硫电池(Li-S)因其高比容量(1675 mA h g)、能量密度(2600 W h kg)以及硫材料的丰富性、安全性和低成本,被视为下一代储能系统的一个有前景的候选者。然而,许多缺点阻碍了锂硫电池的进一步发展,例如活性材料的绝缘性质、中间产物的溶解、大体积膨胀以及与金属锂负极相关的安全问题。在过去十年中,人们在电极材料的设计和合成方面付出了巨大努力。在这篇综述中,我们简要讨论锂硫电池的电化学机理及其实际问题。然后,我们系统地总结了目前设计具有稳定和长循环性能的正极材料的策略,包括硫正极和LiS正极;随后,简要讨论了固态电解质的当前发展以及锂金属负极的保护策略。最后,介绍了锂硫电池当前面临的挑战和未来展望。

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