Science · 1998 · 145 citations · 24 references
EngineeringOrganic ChemistryChemistrySpectroscopic PropertySpectra-structure CorrelationOptical Rotation AngleOptical PropertiesSpecific Rotation AngleOptical SpectroscopyMolecular SpectroscopyBiophysicsMolecular ChiralityPhysicsAtomic PhysicsConformational StudyAtomic ContributionsQuantum ChemistryEnantioselective SynthesisNatural SciencesSpectroscopyMolecular SwitchDynamic Nuclear Polarization
Chiral molecules are characterized by a specific rotation angle, the angle through which plane-polarized light is rotated on passing through an enantiomerically enriched solution. Recent developments in methodology allow computation of both the sign and the magnitude of these rotation angles. However, a general strategy for assigning the individual contributions that atoms and functional groups make to the optical rotation angle and, more generally, to the molecular chirality has remained elusive. Here, a method to determine the atomic contributions to the optical rotation angle is reported. This approach links chemical structure with optical rotation angle and provides a quantitative measure of molecular asymmetry propagation from a center, axis, or plane of chirality.
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On the Theory of Optical Rotatory Power
John G. Kirkwood · The Journal of Chemical Physics · 1937 · 536 citations
Optical Rotatory Dispersion of Helical Polymers
W. Moffitt · The Journal of Chemical Physics · 1956 · 529 citations
Chiral discrimination by chemical force microscopy
Rachel A. McKendry, Maria‐Elena Theoclitou, Trevor Rayment et al. · Nature · 1998 · 224 citations