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用于稳定锂金属电池的通过双键多孔聚合物涂层的亲锂性和抗腐蚀铜集流体

Lithiophilic and Anticorrosive Cu Current Collector via Dual-Bonded Porous Polymer Coating for Stable Lithium-Metal Batteries.

作者信息

Chen Long, Chen Gen, Lin Xiaohui, Zheng Zhicheng, Wen Zuxin, Wu Dan, Weng Zheng, Zhang Ning, Liu Xiaohe, Ma Renzhi

机构信息

School of Materials Science and Engineering, Key Laboratory of Electronic Packaging and Advanced Functional Materials of Hunan Province, Central South University, Changsha 410083, P. R. China.

Hunan Key Laboratory of Two-Dimensional Materials, State Key Laboratory for Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 10. doi: 10.1021/acsami.2c21612.

Abstract

Li metal is the ultimate anode material for next-generation high-energy-density rechargeable batteries. However, the uncontrollable growth of Li dendrites and low Coulombic efficiency (CE) prevent it from practical applications in Li metal batteries (LMBs). Here, a facile and low-cost strategy is developed to decorate a Cu current collector with a self-assembled γ-aminopropyltrimethoxysilane (γ-APS) film. The thin polymer film with nanopores promotes the formation of cobblestone-like Li deposition and suppresses Li-dendrite formation due to its low surface energy. The protecting layer not only increases the lithiophilicity of the Cu current collector but also alleviates the ambient corrosion and galvanic corrosion in practical use. Owing to these advantages, the half cell using γ-APS-Cu collectors exhibits a high average CE value of 99.2% for 100 cycles. The symmetric cell of γ-APS-Cu@Li shows an improved lifespan of 1400 h with a small voltage hysteresis of 12 mV at 0.5 mA cm. The full cell assembled with LiFePO (LFP) cathodes and γ-APS-Cu@Li anodes delivers a high capacity of 136 mAh g after 600 cycles at 0.5C.

摘要

锂金属是下一代高能量密度可充电电池的理想负极材料。然而,锂枝晶的不可控生长和低库仑效率阻碍了其在锂金属电池(LMB)中的实际应用。在此,开发了一种简便且低成本的策略,用自组装的γ-氨丙基三甲氧基硅烷(γ-APS)薄膜修饰铜集流体。具有纳米孔的聚合物薄膜因其低表面能促进了鹅卵石状锂沉积的形成并抑制了锂枝晶的形成。该保护层不仅提高了铜集流体的亲锂性,还减轻了实际使用中的环境腐蚀和电偶腐蚀。由于这些优点,使用γ-APS-Cu集流体的半电池在100次循环中表现出99.2%的高平均库仑效率值。γ-APS-Cu@Li对称电池在0.5 mA cm下表现出1400 h的延长寿命和12 mV的小电压滞后。用磷酸铁锂(LFP)阴极和γ-APS-Cu@Li阳极组装的全电池在0.5C下600次循环后提供136 mAh g的高容量。

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