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用于对称锂氧电池的独立且稳定的全金属结构的制备方法。

Process for a Free-Standing and Stable All-Metal Structure for Symmetrical Lithium-Oxygen Batteries.

作者信息

Luo Nan, Ji Gui-Juan, Wang Huan-Feng, Li Fei, Liu Qing-Chao, Xu Ji-Jing

机构信息

State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130012, P. R. China.

College of Chemistry and Molecular Engineering, Zhengzhou University, 100 Science Road, Zhengzhou 450001, P. R. China.

出版信息

ACS Nano. 2020 Mar 24;14(3):3281-3289. doi: 10.1021/acsnano.9b08844. Epub 2020 Mar 10.

Abstract

A number of inherent and thorny obstacles still stand in the way of the practical application of Li-O batteries, which require development of an advanced lithium anode and O cathode. Herein, the strategy of a symmetrical Li-O battery is presented. Specifically, Cu nanoneedle arrays with a nanoengineered Au coating are grown directly on a Cu foam substrate (Au/Cu@FCu), which can act as both the anode backbone and the cathode in a Li-O battery. The excellent conductivity, high porosity, large specific surface, and superior lithiophilicity as well as high catalytic activity of the Au/Cu@FCu electrodes can simultaneously regulate the deposition behavior of the lithium metal in the anode and catalyze the formation/decomposition of LiO in the cathode. As a result, the Li uniformly deposited on the Au/Cu@FCu anode without Li dendrites, showing a high Coulombic efficiency over 96% and a long and stable cycle lifetime over 970 h. At the same time, the Au/Cu@FCu cathode demonstrates extremely low overpotentials (0.64 V) and a much higher specific capacity of 27 270 mAh g compared to the Li-O batteries with a carbon-free cathode reported to date. Moreover, the "ebb and flow" phenomenon of the anode and cathode morphology is also observed in the Li-O battery.

摘要

锂氧电池的实际应用仍面临一些固有的棘手障碍,这需要开发先进的锂阳极和氧阴极。在此,提出了一种对称锂氧电池的策略。具体而言,具有纳米工程金涂层的铜纳米针阵列直接生长在泡沫铜基板(Au/Cu@FCu)上,其在锂氧电池中既可以作为阳极骨架,也可以作为阴极。Au/Cu@FCu电极优异的导电性、高孔隙率、大比表面积、卓越的亲锂性以及高催化活性,能够同时调节锂金属在阳极的沉积行为,并催化阴极中LiO的形成/分解。结果,锂均匀地沉积在Au/Cu@FCu阳极上,没有锂枝晶,显示出超过96%的高库仑效率和超过970小时的长且稳定的循环寿命。同时,与迄今报道的无碳阴极锂氧电池相比,Au/Cu@FCu阴极表现出极低的过电位(0.64 V)和高达27270 mAh g的更高比容量。此外,在锂氧电池中还观察到阳极和阴极形态的“涨落”现象。

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