A crystalline carbon nitride–based separator for high-performance lithium metal batteries

Author:

Di Shuanlong123,Li Hongguan23,Zhai Boyin13,Zhi Xiaojuan23,Niu Ping23ORCID,Wang Shulan1,Li Li234ORCID

Affiliation:

1. Department of Chemistry, College of Science, Northeastern University, Shenyang 110819, Liaoning, P. R. China

2. State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110819, Liaoning, P. R. China

3. School of Metallurgy, Northeastern University, Shenyang 110819, Liaoning, P. R. China

4. Foshan Graduate School of Innovation, Northeastern University, Foshan 528311, Guangdong, P. R. China

Abstract

Lithium metal anodes with ultrahigh theoretical capacities are very attractive for assembling high-performance batteries. However, uncontrolled Li dendrite growth strongly retards their practical applications. Different from conventional separator modification strategies that are always focused on functional group tuning or mechanical barrier construction, herein, we propose a crystallinity engineering–related tactic by using the highly crystalline carbon nitride as the separator interlayer to suppress dendrite growth. Interestingly, the presence of Cl intercalation and high-content pyrrolic-N from molten salt treatment along with highly crystalline structure enhanced the interactions of carbon nitride with Li + and homogenized lithium flux for uniform deposition, as supported by both experimental and theoretical evidences. The Li–Li cell with the modified separator therefore delivered ultrahigh stability even after 3,000 h with dendrite-free cycled electrodes. Meanwhile, the assembled Li–LiFePO 4 full-cell also presented high-capacity retention. This work opens up opportunities for design of functional separators through crystallinity engineering and broadens the use of C 3 N 4 for advanced batteries.

Funder

MOST | National Natural Science Foundation of China

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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