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用于高性能锂金属电池的亲锂混合保护层调控锂成核

Tuning Li Nucleation by a Hybrid Lithiophilic Protective Layer for High-Performance Lithium Metal Batteries.

作者信息

Zhao Kaixin, Zhang Lirong, Jin Qi, Xiao Junpeng, Wu Lili, Zhang Xitian

机构信息

Key Laboratory for Photonic and Electronic Bandgap Materials, Ministry of Education, School of Physics and Electronic Engineering, Harbin Normal University, Harbin150025, PR China.

出版信息

ACS Appl Mater Interfaces. 2023 Jan 18;15(2):3089-3098. doi: 10.1021/acsami.2c20616. Epub 2023 Jan 3.

Abstract

Lithium (Li) metal has been recognized as the most promising anode material for next-generation rechargeable batteries. However, the practical application of Li anodes is hampered by the growth of Li dendrites. To address this issue, a robust and uniform Sb-based hybrid lithiophilic protective layer is designed and built by a facile in situ surface reaction approach. As evidenced theoretically and experimentally, the as-prepared hybrid protective layer provides outstanding wettability and fast charge-transfer kinetics. Moreover, the lithiophilic Sb embedded in the protective layer provides a rich site for Li nucleation, which effectively reduces the overpotential and induces uniform Li deposition. Consequently, the symmetric cell exhibits a long lifespan of over 1600 h at 1 mA cm and 1 mAh cm with a low voltage polarization. Furthermore, excellent cycling stability is also obtained in Li-S full cells (60% capacity retention in 800 cycles at 1 C) and Li||LFP full cells (74% capacity retention in 500 cycles at 5 C). This work proposed a facile but efficient strategy to stabilize the Li metal anode.

摘要

锂(Li)金属已被公认为下一代可充电电池最具前景的负极材料。然而,锂枝晶的生长阻碍了锂负极的实际应用。为了解决这个问题,通过一种简便的原位表面反应方法设计并构建了一种坚固且均匀的锑基混合亲锂保护层。理论和实验证明,所制备的混合保护层具有出色的润湿性和快速的电荷转移动力学。此外,嵌入保护层中的亲锂锑为锂成核提供了丰富的位点,有效降低了过电位并诱导锂均匀沉积。因此,对称电池在1 mA cm²和1 mAh cm²下表现出超过1600小时的长寿命,且电压极化较低。此外,在锂硫全电池(1 C下800次循环中容量保持率为60%)和锂||磷酸铁锂全电池(5 C下500次循环中容量保持率为74%)中也获得了优异的循环稳定性。这项工作提出了一种简便而有效的策略来稳定锂金属负极。

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