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用于高能无阳极锂金属电池的磷化3D集流体

Phosphorized 3D Current Collector for High-Energy Anode-Free Lithium Metal Batteries.

作者信息

You Xingzi, Feng Yujie, Ning De, Yao Haidi, Wang Man, Wang Jun, Chen Bingan, Zhong Guo-Hua, Yang Chunlei, Wu Wei

机构信息

Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, P. R. China.

Nano Science and Technology Institute, University of Science and Technology of China, Suzhou 215123, P. R. China.

出版信息

Nano Lett. 2024 Sep 18;24(37):11367-11375. doi: 10.1021/acs.nanolett.4c01844. Epub 2024 Sep 3.

Abstract

The anode-free lithium metal battery (AF-LMB) demonstrates the emerging battery chemistry, exhibiting higher energy density than the existing lithium-ion battery and conventional LMB empirically. A systematic step-by-step while bottom-up calculation system is first developed to quantitatively depict the energy gap from theory to practice. The attainable high energy of AF-LMB necessitates a homogeneous Li flux on the anode side to achieve an improved Li reversibility against inventory loss. On such basis, a lithiophilic CuP-decorated 3D copper foil to promote dendrite-free lithium deposition is further reported. The phosphorized surface of high affinity toward Li incorporating the nanostructure of abundant nucleation sites synergistically regulates the Li nucleation/growth behavior, extending the cycling lifespan of high-loading AF-LMBs. The processed foil featuring lightweight and ultrathin merits further increases the energy density, both gravimetrically and volumetrically. This study provides a novel scheme for simultaneously realizing the uniform deposition of lithium and increasing the energy density of future AF-LMBs.

摘要

无阳极锂金属电池(AF-LMB)展示了新兴的电池化学,经验证其能量密度高于现有的锂离子电池和传统锂金属电池。首先开发了一个系统的、自下而上的逐步计算系统,以定量描述从理论到实践的能量差距。AF-LMB可实现的高能量需要阳极侧有均匀的锂通量,以提高锂的可逆性,减少锂库存损失。在此基础上,进一步报道了一种亲锂的CuP修饰的3D铜箔,以促进无枝晶锂沉积。对锂具有高亲和力的磷化表面结合了丰富成核位点的纳米结构,协同调节锂的成核/生长行为,延长了高负载AF-LMB的循环寿命。这种具有轻质和超薄优点的处理过的箔片进一步提高了能量密度,包括重量能量密度和体积能量密度。本研究为同时实现锂的均匀沉积和提高未来AF-LMB的能量密度提供了一种新方案。

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