13–17 Sept 2021 Virtual Conference
Virtual
Europe/Vienna timezone
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In Situ Characterisation of the Solid Electrolyte Interphase in Lithium Ion Batteries

13 Sept 2021, 14:20
20m
Room 3

Room 3

Oral Presentation A6. Characterisation of functional materials A6_Characterisation of functional materials

Speaker

Zoë Henderson (University of Manchester)

Description

The increasing global energy demand has fuelled considerable effort into improving upon current energy storage technologies to keep in step with this demand. Improving current energy storage technologies, such as lithium ion batteries (LIBs), requires insight and understanding of the fundamentals of their operation. A key component of LIBs is the solid-electrolyte interphase (SEI), which develops at the interface between the electrode and the electrolyte as a result of reaction with, and degradation of, the battery electrolyte [1]. This passivating layer is vital to the operation and performance of batteries, but little is known of its exact structure since these electrode/electrolyte interfaces are buried deep within the battery, and so are difficult to “look” at using standard characterisation techniques [2]. So-called “post-mortem” studies, which involve taking batteries apart inside a glove box, are methodologically simple, but may alter the SEI surface chemistry through exposing highly reactive materials to glove box contaminants.
Here we introduce a platform for in situ characterisation of electrode/electrolyte interfaces, capable of operation and disassembly of LIB components (anode, cathode and electrolyte) completely in situ without the need to transfer materials to a glove box prior to characterisation. We demonstrate the capabilities of the platform using interface sensitive techniques, including data from one of the first lab-based hard X-ray photoelectron spectrometers, which is based at the Henry Royce Institute at the University of Manchester. Electrochemical data is also presented, demonstrating the electrochemical characterisation abilities of the platform, and shows potential for extending beyond studies of LIB technology.

References
[1] Peled and Menkin, J. Electrochem. Soc., 164, 7 (2017).
[2] Wu et al. Phys. Chem. Chem. Phys. 17, 30229, (2015).

Speaker Country United Kingdom

Authors

Zoë Henderson (University of Manchester) Dr Alex Walton (University of Manchester) Dr Conor Byrne (University of Manchester) Mr Christopher Slann (University of Manchester) Dr Ben Spencer (University of Manchester) Dr Joshua Gibson (University of Oxford) Prof. Wendy Flavell (University of Manchester) Prof. Robert Weatherup (University of Oxford)

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