Ab initio molecular orbital calculations and empirical electronegativity models are used to understand the linear electronegativity relationships observed for the carbon mean dipole moment derivatives and atomic effective charges calculated from the experimental infrared vibrational intensities of the halomethanes. The charge-charge flux-overlap interpretation of the molecular orbital results shows that only the charge contribution is important in explaining the variations in these parameters for the fluoromethanes. For this reason a simple electrostatic model is sufficient to explain their fundamental infrared intensity sums. The mean dipole moment derivative values determined from the experimental intensities suggest the absence of a satu...
The infrared fundamental intensities of benzene and hexafluorobenzene have been calculated at the MP...
Infrared spectroscopy in connection with quantum mechanical calculations based on density functional...
Ab initio molecular orbital calculations on fluoro- and chloro-methanes, CH4−nXn, predict the correc...
Two basic assumptions of the simple potential model applied to the carbon 1s electron binding energi...
Infrared fundamental vibrational intensities and quantum theory atoms in molecules (QTAIM) charge-ch...
An electronegativity model for the calculation of gas-phase fundamental intensity sums of the halome...
The polar tensors of CFCl3, CF2Cl2, and CF3Cl determined from experimental infrared intensities are ...
The molecular dipole moments, their derivatives, and the fundamental IR intensities of the fluoro-, ...
Characteristic substituent-shift models for carbon mean dipole-moment derivatives are determined for...
Author Institution:The use of transferred polar tensors to calculate the expected intensities of the...
Author Institution:The use of transferred polar tensors to calculate the expected intensities of the...
Author Institution: Department of Physics, Illinois Institute of TechnologyA theory is presented for...
Author Institution: Department of Physics, Illinois Institute of TechnologyA theory is presented for...
Infrared spectroscopy in connection with quantum mechanical calculations based on density functional...
Infrared spectroscopy in connection with quantum mechanical calculations based on density functional...
The infrared fundamental intensities of benzene and hexafluorobenzene have been calculated at the MP...
Infrared spectroscopy in connection with quantum mechanical calculations based on density functional...
Ab initio molecular orbital calculations on fluoro- and chloro-methanes, CH4−nXn, predict the correc...
Two basic assumptions of the simple potential model applied to the carbon 1s electron binding energi...
Infrared fundamental vibrational intensities and quantum theory atoms in molecules (QTAIM) charge-ch...
An electronegativity model for the calculation of gas-phase fundamental intensity sums of the halome...
The polar tensors of CFCl3, CF2Cl2, and CF3Cl determined from experimental infrared intensities are ...
The molecular dipole moments, their derivatives, and the fundamental IR intensities of the fluoro-, ...
Characteristic substituent-shift models for carbon mean dipole-moment derivatives are determined for...
Author Institution:The use of transferred polar tensors to calculate the expected intensities of the...
Author Institution:The use of transferred polar tensors to calculate the expected intensities of the...
Author Institution: Department of Physics, Illinois Institute of TechnologyA theory is presented for...
Author Institution: Department of Physics, Illinois Institute of TechnologyA theory is presented for...
Infrared spectroscopy in connection with quantum mechanical calculations based on density functional...
Infrared spectroscopy in connection with quantum mechanical calculations based on density functional...
The infrared fundamental intensities of benzene and hexafluorobenzene have been calculated at the MP...
Infrared spectroscopy in connection with quantum mechanical calculations based on density functional...
Ab initio molecular orbital calculations on fluoro- and chloro-methanes, CH4−nXn, predict the correc...