openHSU logo
  • English
  • Deutsch
  • Log In
  • Communities & Collections
  1. Home
  2. Helmut-Schmidt-University / University of the Federal Armed Forces Hamburg
  3. Publications
  4. 3 - Publication references (without full text)
  5. Mechanism of Li nucleation at graphite anodes and mitigation strategies
 
Options
Show all metadata fields

Mechanism of Li nucleation at graphite anodes and mitigation strategies

Publication date
2021-07-20
Document type
Research article
Author
Peng, Chao
Bhandari, Arihant
Dziedzic, Jacek
Owen, John R.
Skylaris, Chris-Kriton
Kramer, Denis 
Organisational unit
Computational Material Design 
DOI
10.1039/D1TA03447B
URI
https://openhsu.ub.hsu-hh.de/handle/10.24405/14287
ISSN
2050-7488
Series or journal
Journal of materials chemistry A
Periodical volume
9
Periodical issue
31
First page
16798
Last page
16804
Peer-reviewed
✅
Part of the university bibliography
✅
  • Additional Information
Abstract
Lithium metal plating is a critical safety issue in Li-ion cells with graphite anodes, and contributes significantly to ageing, drastically limiting the lifetime and inducing capacity loss. Nonetheless, the nucleation mechanism of metallic Li on graphite anodes is still poorly understood. But in-depth understanding is needed to rationally design mitigation measures. In this work, we conducted First-Principles studies to elucidate the Li nucleation mechanism on graphite surfaces. These large-scale density-functional-theory (DFT) calculations indicate that nano-particulate Li forms much more readily than classical nucleation theory predicts. Further, our calculations indicate a crucial role of topological surface states near the zigzag edge, lowering the nucleation barrier by a further 1.32 eV relative to nucleation on the basal plane. Li nucleation, therefore, is likely to initiate at or near the zigzag edges of graphitic particles. Finally, we suggest that chemical doping with a view to reducing the effect of the topological surface states might be a potential mitigation strategy to increase nucleation barriers and reduce the propensity to plate Li near the zigzag edge.
Version
Not applicable (or unknown)
Access right on openHSU
Metadata only access

  • Cookie settings
  • Privacy policy
  • Send Feedback
  • Imprint