Publication | Closed Access
Nature and strength of C–H⋯O interactions involving formyl hydrogen atoms: computational and experimental studies of small aldehydes
100
Citations
77
References
2011
Year
Materials ScienceChemical EngineeringEngineeringC–h⋯o InteractionsNatural SciencesSmall AldehydesChemical BondDipole-dipole InteractionsHydrogen BondPhysical ChemistryComputational ChemistryQuantum ChemistryChemistryHydrogen BondingMolecular ChemistryFormyl Hydrogen AtomsCrystallographyRelative Dipole-dipole Contributions
Structural and electronic properties of C-H···O contacts in compounds containing a formyl group are investigated from the perspective of both hydrogen bonding and dipole-dipole interactions, in a systematic and graded approach. The effects of α-substitution and self-association on the nature of the formyl H-atom are studied with the NBO and AIM methodologies. The relative dipole-dipole contributions in formyl C-H···O interactions are obtained for aldehyde dimers. The stabilities and energies of aldehyde clusters (dimer through octamer) have been examined computationally. Such studies have an implication in crystallization mechanisms. Experimental X-ray crystal structures of formaldehyde, acrolein and N-methylformamide have been determined in order to ascertain the role of C-H···O interactions in the crystal packing of formyl compounds.
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