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溶剂在非水锂氧电池电化学中的关键作用

Solvents' Critical Role in Nonaqueous Lithium-Oxygen Battery Electrochemistry.

作者信息

McCloskey B D, Bethune D S, Shelby R M, Girishkumar G, Luntz A C

机构信息

Almaden Research Center, IBM Research, 650 Harry Road, San Jose, California 95120, United States.

出版信息

J Phys Chem Lett. 2011 May 19;2(10):1161-6. doi: 10.1021/jz200352v. Epub 2011 Apr 27.

Abstract

Among the many important challenges facing the development of Li-air batteries, understanding the electrolyte's role in producing the appropriate reversible electrochemistry (i.e., 2Li(+) + O2 + 2e(-) ↔ Li2O2) is critical. Quantitative differential electrochemical mass spectrometry (DEMS), coupled with isotopic labeling of oxygen gas, was used to study Li-O2 electrochemistry in various solvents, including carbonates (typical Li ion battery solvents) and dimethoxyethane (DME). In conjunction with the gas-phase DEMS analysis, electrodeposits formed during discharge on Li-O2 cell cathodes were characterized using ex situ analytical techniques, such as X-ray diffraction and Raman spectroscopy. Carbonate-based solvents were found to irreversibly decompose upon cell discharge. DME-based cells, however, produced mainly lithium peroxide on discharge. Upon cell charge, the lithium peroxide both decomposed to evolve oxygen and oxidized DME at high potentials. Our results lead to two conclusions; (1) coulometry has to be coupled with quantitative gas consumption and evolution data to properly characterize the rechargeability of Li-air batteries, and (2) chemical and electrochemical electrolyte stability in the presence of lithium peroxide and its intermediates is essential to produce a truly reversible Li-O2 electrochemistry.

摘要

在锂空气电池发展面临的众多重要挑战中,了解电解质在产生适当的可逆电化学过程(即2Li(+) + O2 + 2e(-) ↔ Li2O2)中的作用至关重要。定量差分电化学质谱法(DEMS)结合氧气的同位素标记,用于研究在包括碳酸盐(典型的锂离子电池溶剂)和二甲氧基乙烷(DME)在内的各种溶剂中的锂氧电化学。结合气相DEMS分析,使用X射线衍射和拉曼光谱等非原位分析技术对锂氧电池阴极放电过程中形成的电沉积物进行了表征。发现基于碳酸盐的溶剂在电池放电时会不可逆地分解。然而,基于DME的电池在放电时主要产生过氧化锂。在电池充电时,过氧化锂在高电位下既分解释放氧气又氧化DME。我们的结果得出两个结论:(1)库仑法必须与定量的气体消耗和释放数据相结合,以正确表征锂空气电池的可充电性;(2)在过氧化锂及其中间体存在下,化学和电化学电解质稳定性对于产生真正可逆的锂氧电化学至关重要。

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