MXenes with ordered triatomic-layer borate polyanion terminations

Publication date

2024-08

Authors

Li, Dongqi
Zheng, Wenhao
Gali, Sai Manoj
Sobczak, Kamil
Horák, Michal
Polčák, Josef
Lopatik, Nikolaj
Li, Zichao
Zhang, Jiaxu
Sabaghi, Davood

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Surface terminations profoundly influence the intrinsic properties of MXenes, but existing terminations are limited to monoatomic layers or simple groups, showing disordered arrangements and inferior stability. Here we present the synthesis of MXenes with triatomic-layer borate polyanion terminations (OBO terminations) through a flux-assisted eutectic molten etching approach. During the synthesis, Lewis acidic salts act as the etching agent to obtain the MXene backbone, while borax generates BO2− species, which cap the MXene surface with an O–B–O configuration. In contrast to conventional chlorine/oxygen-terminated Nb2C with localized charge transport, OBO-terminated Nb2C features band transport described by the Drude model, exhibiting a 15-fold increase in electrical conductivity and a 10-fold improvement in charge mobility at the d.c. limit. This transition is attributed to surface ordering that effectively mitigates charge carrier backscattering and trapping. Additionally, OBO terminations provide Ti3C2 MXene with substantially enriched Li+-hosting sites and thereby a large charge-storage capacity of 420 mAh g−1. Our findings illustrate the potential of intricate termination configurations in MXenes and their applications for (opto)electronics and energy storage.

Keywords

Taverne, General Chemistry, General Materials Science, Condensed Matter Physics, Mechanics of Materials, Mechanical Engineering

Citation

Li, D, Zheng, W, Gali, S M, Sobczak, K, Horák, M, Polčák, J, Lopatik, N, Li, Z, Zhang, J, Sabaghi, D, Zhou, S, Michałowski, P P, Zschech, E, Brunner, E, Donten, M, Šikola, T, Bonn, M, Wang, H I, Beljonne, D, Yu, M & Feng, X 2024, 'MXenes with ordered triatomic-layer borate polyanion terminations', Nature Materials, vol. 23, no. 8, pp. 1085-1092. https://doi.org/10.1038/s41563-024-01911-2