Simon N. Black
Symthons reveal how fluorine disrupts π–π stacking in halobenzene crystal structures
Black, Simon N.; Davey, Roger J.
Authors
Roger J. Davey
Abstract
Symmetry-forming closest approaches of aromatic rings; ‘Symthons’, are usually the strongest interactions in halobenzene crystal structures. Where they combine to create π–π stacking, they are as strong as hydrogen bonds. This π–π stacking is disrupted when fluorine is present, as revealed in this analysis of all 290 closest aromatic approaches in the crystal structures of halobenzenes. Closest aromatic approaches involving fluorine show fewer examples of ‘Symthon I’ π–π stacking, and more examples of offset translations with larger displacements. Edge⋯face approaches are also more common in the presence of fluorine, frequently accommodating fluorine atoms in the ‘edges’. Some edge⋯face approaches do not embody any symmetry. These findings are consistent with lower melting points and favourable connections between fluorine and positively charged carbon atoms.
Citation
Black, S. N., & Davey, R. J. (2024). Symthons reveal how fluorine disrupts π–π stacking in halobenzene crystal structures. CrystEngComm, 26(33), 4498-4508. https://doi.org/10.1039/d4ce00565a
Journal Article Type | Article |
---|---|
Acceptance Date | Jul 18, 2024 |
Online Publication Date | Jul 30, 2024 |
Publication Date | Sep 7, 2024 |
Deposit Date | Oct 15, 2024 |
Publicly Available Date | Oct 15, 2024 |
Journal | CrystEngComm |
Electronic ISSN | 1466-8033 |
Publisher | Royal Society of Chemistry |
Peer Reviewed | Peer Reviewed |
Volume | 26 |
Issue | 33 |
Pages | 4498-4508 |
DOI | https://doi.org/10.1039/d4ce00565a |
Public URL | https://durham-repository.worktribe.com/output/2958274 |
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