Why are dimethyl sulfoxide and dimethyl sulfone such good solvents?
- 6 May 2008
- journal article
- research article
- Published by Springer Nature in Journal of Molecular Modeling
- Vol. 14 (8) , 689-697
- https://doi.org/10.1007/s00894-008-0279-y
Abstract
We have carried out B3PW91 and MP2-FC computational studies of dimethyl sulfoxide, (CH3)2SO, and dimethyl sulfone, (CH3)2SO2. The objective was to establish quantitatively the basis for their high polarities and boiling points, and their strong solvent powers for a variety of solutes. Natural bond order analyses show that the sulfur–oxygen linkages are not double bonds, as widely believed, but rather are coordinate covalent single S+→O− bonds. The calculated electrostatic potentials on the molecular surfaces reveal several strongly positive and negative sites (the former including σ-holes on the sulfurs) through which a variety of simultaneous intermolecular electrostatic interactions can occur. A series of examples is given. In terms of these features the striking properties of dimethyl sulfoxide and dimethyl sulfone, their large dipole moments and dielectric constants, their high boiling points and why they are such good solvents, can readily be understood.Keywords
This publication has 31 references indexed in Scilit:
- Semiempirical GGA‐type density functional constructed with a long‐range dispersion correctionJournal of Computational Chemistry, 2006
- Statistical analysis of the molecular surface electrostatic potential: an approach to describing noncovalent interactions in condensed phasesJournal of Molecular Structure: THEOCHEM, 1998
- Family-independent relationships between computed molecular surface quantities and solute hydrogen bond acidity/basicity and solute-induced methanol O–H infrared frequency shiftsCanadian Journal of Chemistry, 1995
- Intermolecular interactions from a natural bond orbital, donor-acceptor viewpointChemical Reviews, 1988
- Properties of atoms in molecules: atomic volumesJournal of the American Chemical Society, 1987
- Chemical Applications of Atomic and Molecular Electrostatic PotentialsPublished by Springer Nature ,1981
- On the mapping of electrostatic properties from bragg diffraction dataChemical Physics Letters, 1979
- The Merck IndexTransactions of the American Microscopical Society, 1978
- 1077. The rôle of 3d-orbitals in π-bonds between (a) silicon, phosphorus, sulphur, or chlorine and (b) oxygen or nitrogenJournal of the Chemical Society, 1961
- 38. An investigation of the occurrence of the co-ordinate or dative link by electric dipole-moment measurementsJournal of the Chemical Society, 1945