On the Nature of Improper Hydrogen Bonding in RCH <sub>2</sub> F and RCHF <sub>2</sub> Motifs
Abstract
Abstract The RCH 2 F and RCHF 2 groups are substituents of interest in medicinal and agrochemicals products. They have a polar aspect relative to the methyl (RCH 3 ) or trifluoromethyl (RCF 3 ) groups which results in a lowering of Log P's (water affinity). Here we use a computational approach to explore the nature of the interaction between RCH 2 F and RCHF 2 in methanes and ethanes with chloride ion (and water), as a hydrogen bonding acceptor. A key observation is that the hydrogen atoms geminal to the fluorine(s) become less positively charged with increasing fluorination, a trend anticipated to weaken, not strengthen, their hydrogen bonding interactions. However this study demonstrates a dominating role for the electrostatic interaction of the acceptor with the CF carbons and profiles a shift in negative charge density from hydrogen to the carbon and fluorine(s) as chloride ion (or water) approach. The common occurrence of blue shifts (shortening C─H length) in these ‘improper’ or ‘non‐classical’ hydrogen bonds is also explored and is correlated with the electrostatic interactions between the acceptor and the carbon atoms. These observations are extended to C 3 ─C 6 alicyclic rings containing these motifs and predict particularly strong interactions energies between chloride ion and specifically designed organo‐fluoro alicycles.
Article Details
Authors (4)
Bruno A. Piscelli
University of Campinas Chemistry Institute Monteiro Lobato Street, Campinas Sao Paulo 13083‐862 Brazil
Michael Bühl
EaStCHEM, School of Chemistry, University of St Andrews, North Haugh, St Andrews, KY16 9ST, U.K.
Rodrigo A. Cormanich
University of Campinas Chemistry Institute Monteiro Lobato Street, Campinas Sao Paulo 13083‐862 Brazil
David O'Hagan
EastChem School of Chemistry University of St Andrews North Haugh St Andrews KY16 9ST UK