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Modulated self-assembly of hcp topology MOFs of Zr/Hf and the extended 4,4′-(ethyne-1,2-diyl)dibenzoate linker

Boyadjieva, Sophia S.; Firth, Francesca C.N.; Alizadeh Kiapi, Mohammad R.; Fairen-Jimenez, David; Ling, Sanliang; Cliffe, Matthew J.; Forgan, Ross S.

Modulated self-assembly of hcp topology MOFs of Zr/Hf and the extended 4,4′-(ethyne-1,2-diyl)dibenzoate linker Thumbnail


Authors

Sophia S. Boyadjieva

Francesca C.N. Firth

Mohammad R. Alizadeh Kiapi

David Fairen-Jimenez

Ross S. Forgan



Abstract

Careful control of synthetic conditions can enhance the structural diversity of metal–organic frameworks (MOFs) within individual metal-linker combinations. Herein, we show that hcp topology MOFs of both Zr(iv) and Hf(iv), linked by the extended (ethyne-1,2-diyl)dibenzoate linker, can be prepared by modulated self-assembly. The controlled addition of acetic acid and water to solvothermal syntheses is essential to generate these phase pure hcp topology materials, which are characterised experimentally and computationally. The central alkyne unit of the linker can be quantitatively brominated, but this results in partial degradation of the hcp phase, in contrast to the more stable fcu topology analogues. Nevertheless, the MOFs represent new members of the hcp topology isoreticular series showing high crystallinity and porosity, and demonstrate that new materials can be discovered in existing MOF phase spaces through judicious adjustment of key synthetic parameters.

Citation

Boyadjieva, S. S., Firth, F. C., Alizadeh Kiapi, M. R., Fairen-Jimenez, D., Ling, S., Cliffe, M. J., & Forgan, R. S. (2023). Modulated self-assembly of hcp topology MOFs of Zr/Hf and the extended 4,4′-(ethyne-1,2-diyl)dibenzoate linker. CrystEngComm, 25(14), 2119-2124. https://doi.org/10.1039/d2ce01529c

Journal Article Type Article
Acceptance Date Feb 26, 2023
Online Publication Date Mar 7, 2023
Publication Date Apr 14, 2023
Deposit Date Apr 3, 2023
Publicly Available Date Apr 4, 2023
Journal CrystEngComm
Electronic ISSN 1466-8033
Publisher Royal Society of Chemistry (RSC)
Peer Reviewed Peer Reviewed
Volume 25
Issue 14
Pages 2119-2124
DOI https://doi.org/10.1039/d2ce01529c
Keywords Condensed Matter Physics; General Materials Science; General Chemistry
Public URL https://nottingham-repository.worktribe.com/output/18805482
Publisher URL https://pubs.rsc.org/en/content/articlelanding/2023/CE/D2CE01529C

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