Rapid mapping of lithiation dynamics in transition metal oxide particles with operando X-ray absorption spectroscopy


Date

2016-02-24

Publication Type

Journal Article

ETH Bibliography

yes

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Abstract

Since the commercialization of lithium ion batteries (LIBs), layered transition metal oxides (LiMO2, where M = Co, Mn, Ni, or mixtures thereof) have been materials of choice for LIB cathodes. During cycling, the transition metals change their oxidation states, an effect that can be tracked by detecting energy shifts in the X-ray absorption near edge structure (XANES) spectrum. X-ray absorption spectroscopy (XAS) can therefore be used to visualize and quantify lithiation kinetics in transition metal oxide cathodes; however, in-situ measurements are often constrained by temporal resolution and X-ray dose, necessitating compromises in the electrochemistry cycling conditions used or the materials examined. We report a combined approach to reduce measurement time and X-ray exposure for operando XAS studies of lithium ion batteries. A highly discretized energy resolution coupled with advanced post-processing enables rapid yet reliable identification of the oxidation state. A full-field microscopy setup provides sub-particle resolution over a large area of battery electrode, enabling the oxidation state within many transition metal oxide particles to be tracked simultaneously. Here, we apply this approach to gain insights into the lithiation kinetics of a commercial, mixed-metal oxide cathode material, nickel cobalt aluminium oxide (NCA), during (dis)charge and its degradation during overcharge.

Publication status

published

Editor

Book title

Volume

6

Pages / Article No.

21479

Publisher

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Methods

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Date created

Subject

Characterization and analytical techniques; Batteries

Organisational unit

03817 - Stampanoni, Marco F.M. / Stampanoni, Marco F.M. check_circle
03895 - Wood, Vanessa / Wood, Vanessa check_circle
02636 - Institut für Integrierte Systeme / Integrated Systems Laboratory

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