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Structural chemistry of the n = 3 Dion–Jacobson phases: controlling polarity and band gap †

Ali, Areesha; Cascos, Vanessa; Pritchard, Faith G.; Verlet, Jan R. R.; Sutherland, Nicole R.; Woolley, Jack; Lloyd-Hughes, James; Avdeev, Maxim; Beeby, Andy; Clark, Stewart J.; McCabe, Emma E.

Structural chemistry of the n = 3 Dion–Jacobson phases: controlling polarity and band gap † Thumbnail


Authors

Vanessa Cascos

Faith G. Pritchard

Jan R. R. Verlet

Jack Woolley

James Lloyd-Hughes

Maxim Avdeev

Andy Beeby



Abstract

The Dion–Jacobson phases are increasingly gaining attention for their photoactivity and potential applications as photocatalysts and sensors, in addition to their polar structures. The structure – composition – property relationships for the n = 3 phases (of general formula A′A2B3O10e.g., A′ = Rb, Cs; A = Ca, Sr, Ba; B = Nb, Ta) are not well understood because of the lack of reliable structural models for this series. Our combined experimental and computational study addresses this by determining and explaining the complex structural chemistry of these materials, and provides a guide to allow structures and properties of new materials to be predicted and understood. We find that both A′ and A cations determine the tilts of BO6 octahedra and hence small A2+ ions tend to give materials with larger band gaps. The polar structures observed for A = Ca phases result from “proper” mechanisms and the role of the second-order Jahn–Teller effect of the B = Nb, Ta cations is discussed.

Citation

Ali, A., Cascos, V., Pritchard, F. G., Verlet, J. R. R., Sutherland, N. R., Woolley, J., Lloyd-Hughes, J., Avdeev, M., Beeby, A., Clark, S. J., & McCabe, E. E. (online). Structural chemistry of the n = 3 Dion–Jacobson phases: controlling polarity and band gap †. Journal of Materials Chemistry A: materials for energy and sustainability, https://doi.org/10.1039/d5ta02587g

Journal Article Type Article
Acceptance Date Jun 8, 2025
Online Publication Date Jun 12, 2025
Deposit Date Jun 30, 2025
Publicly Available Date Jun 30, 2025
Journal Journal of Materials Chemistry A
Print ISSN 2050-7488
Electronic ISSN 2050-7496
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
DOI https://doi.org/10.1039/d5ta02587g
Public URL https://durham-repository.worktribe.com/output/4125211

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