| Literature DB >> 27247250 |
Josefin Wilke1, Martin Wilke1, Christian Brand1,2, W Leo Meerts3, Michael Schmitt4.
Abstract
The estimate of the magnitude and the orientation of molecular electric dipole moments from the vector sum of bond or fragment dipole moments is a widely used approach in chemistry. However, the limitations of this intuitive model have rarely been tested experimentally, particularly for electronically excited states. Herein, we find rules for a number of indole derivatives by using rotationally resolved electronic Stark spectroscopy and ab initio calculations. Based on a natural-bond-orbital analysis, we discuss whether the vector additivity rule can be applied in a given electronic state. From a comparison of the experimental data with ab initio calculations, we deduced that the additivity model does not apply when the flow of electron density from the substituent is opposed to that inside the chromophore.Entities:
Keywords: ab initio calculations; electric dipole moments; high-resolution spectroscopy; indole; substituent effects
Year: 2016 PMID: 27247250 DOI: 10.1002/cphc.201600420
Source DB: PubMed Journal: Chemphyschem ISSN: 1439-4235 Impact factor: 3.102