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用于均匀锂离子通量和稳定锂金属电池的亲锂NiP@NCNT中间层

Lithiophilic NiP@NCNT Interlayer for Uniform Li-Ion Flux and Stable Lithium Metal Batteries.

作者信息

Yu Bo, Chen Long, Fei Luo, Wang Xiaolong, Chen Junchen, Wang Mingshan, Ma Zhiyuan, Zhou Liujiang, Huang Yun, Guo Bingshu, Li Xing

机构信息

School of New Energy and Materials, Southwest Petroleum University, Chengdu 610500, China.

Department of Materials Science, National University of Singapore, Singapore 117574, Singapore.

出版信息

ACS Appl Mater Interfaces. 2025 Jul 2;17(26):37840-37850. doi: 10.1021/acsami.5c03248. Epub 2025 Jun 16.

Abstract

Lithium metal anodes are critical for advancing high-energy-density lithium secondary batteries due to their exceptionally high theoretical specific capacity. However, the uncontrolled growth of lithium dendrites may penetrate the separator, thereby limiting the practical application of lithium metal anodes. In this work, we report a modified commercial PP separator by incorporating a lithiophilic interlayer composed of NiP nanoparticles wrapped with nitrogen-doped carbon nanotubes. The NiP@NCNT functionalized separators exhibit high lithium-ion conductivity and enhanced electrolyte wettability, which improve lithium-ion (Li) transport, promote uniform lithium deposition, and inhibit dendritic growth. Furthermore, DFT calculations reveal a stronger interaction between Li atoms and NiP@NCNT, providing energetically favorable deposition sites and leading to uniform, compact Li plating. The Li||Cu cell incorporating NiP@NCNT/PP demonstrates stable cycling over 300 cycles at a current density of 0.5 mA cm. Meanwhile, the Li||Li symmetric cell achieves an extended operational lifespan of 1500 h under 0.5 mA cm. Additionally, the LFP||Li cell demonstrates an extremely low capacity degradation rate of 0.07% per cycle at 0.5 C, showing promising cycling performance. This study introduces a novel approach for designing functional lithiophilic interlayers, providing new perspectives on effectively mitigating Li dendrite formation in lithium metal batteries.

摘要

锂金属阳极因其极高的理论比容量,对于推进高能量密度锂二次电池至关重要。然而,锂枝晶的无控制生长可能会穿透隔膜,从而限制了锂金属阳极的实际应用。在这项工作中,我们报道了一种通过引入由包裹有氮掺杂碳纳米管的NiP纳米颗粒组成的亲锂中间层来改性的商用PP隔膜。经NiP@NCNT功能化的隔膜表现出高锂离子传导率和增强的电解质润湿性,这改善了锂离子(Li)传输,促进了锂的均匀沉积,并抑制了枝晶生长。此外,密度泛函理论(DFT)计算表明Li原子与NiP@NCNT之间有更强的相互作用,提供了能量上有利的沉积位点,并导致均匀、致密的锂镀层。采用NiP@NCNT/PP的Li||Cu电池在0.5 mA cm的电流密度下可稳定循环300次以上。同时,Li||Li对称电池在0.5 mA cm下实现了1500小时的延长使用寿命。此外,LFP||Li电池在0.5 C下表现出极低的容量退化率,即每循环0.07%,显示出良好的循环性能。本研究介绍了一种设计功能性亲锂中间层的新方法,为有效减轻锂金属电池中锂枝晶的形成提供了新的视角。

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