Silver-Atom Modulation of Ti Vacancies in MXene Enables Uniform Spherical Lithium Deposition

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Silver-Atom Modulation of Ti Vacancies in MXene Enables Uniform Spherical Lithium Deposition
Title:
Silver-Atom Modulation of Ti Vacancies in MXene Enables Uniform Spherical Lithium Deposition
Journal Title:
ACS Energy Letters
Keywords:
Publication Date:
19 September 2024
Citation:
Li, X. L., Lieu, W. Y., Wang, L., Yan, D., Li, Y., Ghosh, T., Li, Y., Lu, J., Seh, Z. W., & Yang, H. Y. (2024). Silver-Atom Modulation of Ti Vacancies in MXene Enables Uniform Spherical Lithium Deposition. ACS Energy Letters, 9(10), 4929–4938. https://doi.org/10.1021/acsenergylett.4c02190
Abstract:
Effective management of lithium (Li) metal nucleation and growth is critical for its practical application, yet a limited understanding of Li metal anode morphology has impeded progress. This study advances the comprehension of dense spherical Li deposition by linking atomic charge distributions to macroscopic phenomena. By introducing silver (Ag) single atoms into titanium (Ti) vacancies in MXene, we form a unique Ag–C composite that modulates charge distribution, thereby facilitating uniform, spherical Li deposition across the surface. This approach minimizes Ag consumption to below 1 wt % while achieving Li metal deposition capacities exceeding 40 mAh cm–2. Moreover, full cells incorporating MXene-AgSAs@Li anodes paired with LiFePO4 or sulfur cathodes exhibit a significantly enhanced cycling performance and high rate capabilities. These findings provide novel insights into the role of charge partitioning in Li metal deposition and the formation of dense, spherical Li arrays.
License type:
Publisher Copyright
Funding Info:
This research / project is supported by the the Agency for Science, Technology and Research - Central Research Fund Award
Grant Reference no. : NA

This research / project is supported by the Singapore Ministry of Education - academic research fund Tier 2
Grant Reference no. : T2EP50121-0007
Description:
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Energy Letters, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see 10.1021/acsenergylett.4c02190.
ISSN:
2380-8195
2380-8195
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