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确定电池电解质的氧化稳定性:常见电化学稳定窗口(ESW)数据的有效性及替代策略

Determining oxidative stability of battery electrolytes: validity of common electrochemical stability window (ESW) data and alternative strategies.

作者信息

Kasnatscheew J, Streipert B, Röser S, Wagner R, Cekic Laskovic I, Winter M

机构信息

MEET Battery Research Center/Institute of Physical Chemistry, University of Münster, Corrensstrasse 46, 48149 Münster, Germany.

出版信息

Phys Chem Chem Phys. 2017 Jun 21;19(24):16078-16086. doi: 10.1039/c7cp03072j.

Abstract

Increasing the operation voltage of electrochemical energy storage devices is a viable measure to realize higher specific energies and energy densities. A sufficient oxidative stability of electrolytes is the predominant requirement for successful high voltage applicability. The common method to investigate oxidative stability of LIB electrolytes is related to determination of the electrochemical stability window (ESW), on e.g. Pt or LiMnO electrodes. However, the transferability of the obtained results to practical systems is questionable for several reasons. In this work, we evaluated the validity of the potentiodynamic based ESW method by comparing the obtained data with the results of galvanostatic based techniques, applied on commercial positive electrodes. We demonstrated that the oxidative stabilities, determined by the two techniques, are in good accordance with each other. However, the investigation of electrolytes being incompatible to Li metal, renders conventional ESW measurements useless when metallic Li is used as counter - and reference electrode in the ESW setup. For this reason, we introduced an alternative setup based on LiTiO full cells. On the example of a butyronitrile-based electrolyte, we finally demonstrated that this electrolyte is not only reductively but also oxidatively less stable than common LiPF/organic carbonate based electrolytes.

摘要

提高电化学储能装置的工作电压是实现更高比能量和能量密度的可行措施。电解质具有足够的氧化稳定性是成功实现高电压应用的主要要求。研究锂离子电池电解质氧化稳定性的常用方法与在例如铂或锂锰氧化物电极上测定电化学稳定窗口(ESW)有关。然而,由于多种原因,所获得的结果向实际系统的可转移性存在疑问。在这项工作中,我们通过将基于恒电位法获得的数据与应用于商业正极的基于恒电流技术的结果进行比较,评估了基于恒电位法的ESW方法的有效性。我们证明,由这两种技术测定的氧化稳定性彼此高度一致。然而,对于与锂金属不相容的电解质的研究表明,当在ESW装置中使用金属锂作为对电极和参比电极时,传统的ESW测量毫无用处。因此,我们引入了一种基于钛酸锂全电池的替代装置。以一种丁腈基电解质为例,我们最终证明,这种电解质不仅在还原方面,而且在氧化方面都比常见的锂盐/有机碳酸酯基电解质更不稳定。

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