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In crystallo lattice adaptivity triggered by solid-gas reactions of cationic group 7 pincer complexes

Goodall, Joe C.; Page, Samuel J.; Sajjad, M. Arif; Thompson, Emily A.; Kerrigan, Adam M.; Jenkins, Huw T.; Lynam, Jason M.; Macgregor, Stuart A.; Weller, Andrew S.

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Authors

Joe C. Goodall

Dr Samuel Page samuel.j.page@durham.ac.uk
Manager Solid-State NMR Research Service

M. Arif Sajjad

Emily A. Thompson

Adam M. Kerrigan

Huw T. Jenkins

Jason M. Lynam

Stuart A. Macgregor

Andrew S. Weller



Abstract

The group 7 complexes [M(κ3-2,6-(R2PO)2C5H3N)(CO)2L][BArF4] [M = Mn, R = iPr, L = THF; M = Re, R = tBu, L = vacant site] undergo in crystallo solid-gas reactivity with CO to form the products of THF substitution or CO addition respectively. There is a large, local, adaptive change of [BArF4] anions for M = Mn, whereas for M = Re the changes are smaller and also remote to the site of reactivity.

Citation

Goodall, J. C., Page, S. J., Sajjad, M. A., Thompson, E. A., Kerrigan, A. M., Jenkins, H. T., …Weller, A. S. (2023). In crystallo lattice adaptivity triggered by solid-gas reactions of cationic group 7 pincer complexes. Chemical Communications, 59(72), 10749-10752. https://doi.org/10.1039/d3cc03201a

Journal Article Type Article
Acceptance Date Aug 2, 2023
Online Publication Date Aug 7, 2023
Publication Date 2023
Deposit Date Nov 6, 2023
Publicly Available Date Nov 6, 2023
Journal Chemical Communications
Print ISSN 1359-7345
Electronic ISSN 1364-548X
Publisher Royal Society of Chemistry
Peer Reviewed Peer Reviewed
Volume 59
Issue 72
Pages 10749-10752
DOI https://doi.org/10.1039/d3cc03201a
Keywords Materials Chemistry; Metals and Alloys; Surfaces, Coatings and Films; General Chemistry; Ceramics and Composites; Electronic, Optical and Magnetic Materials; Catalysis
Public URL https://durham-repository.worktribe.com/output/1898389

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