Ab initio quantum chemistry calculations have been performed to probe the influence of hydrogen bonding on the electronic structure of hydrogen cyanide (HCN). Our calculations determine the origin of nitrogen-specific Raman spectral features from resonant inelastic X-ray scattering occurring in the presence of a water molecule and an electric dipole field. The similarity of the two interactions in altering the electronic structure of the nitrogen atom differs only in the covalent contributions from the water molecule. The CN stretching mode as a structural probe was also investigated to study the electronic origin of the anomalous frequency shift of the nitrile group when subjected to hydrogen bonding and an electrostatic dipole field. The ...
In centrosymmetric molecules, like A(n+)M-(CN)(6)](n-) (where A is alkali metal cation), normally al...
Hydrogen bond interactions strongly affect vibrational properties and frequencies, the most common c...
Understanding on the spectroscopic properties of a functional group is essential to use it to detect...
Ab initio quantum chemistry calculations have been performed to probe the influence of hydrogen bond...
Ab initio quantum chemistry calculations have been performed to probe the influence of hydrogen bond...
Ab initio quantum chemistry calculations have been performed to probe the influence of hydrogen bond...
The effect of intermolecular H-bonding interactions on the local electronic structure of N-containin...
The effect of intermolecular H-bonding interactions on the local electronic structure of N-containin...
FT-IR (4000-400 cm(-1)) and FT-Raman (4000-200 cm(-1)) spectral measurements on solid 2,6-dichlorobe...
Vibrational spectroscopy is a powerful tool for characterizing the complex noncovalent interactions ...
Photoelectron spectra of HCN and DCN have been recorded at a resolution of 4.5 meV or better using H...
The effect of hydrogen on the electronic structure of amorphous carbon-nitrogen alloys (a-CNx) prepa...
We report the partitioning of the interaction-induced static electronic dipole (hyper)polarizabiliti...
In centrosymmetric molecules, like A(n+)M-(CN)(6)](n-) (where A is alkali metal cation), normally al...
Hydrogen bond interactions strongly affect vibrational properties and frequencies, the most common c...
In centrosymmetric molecules, like A(n+)M-(CN)(6)](n-) (where A is alkali metal cation), normally al...
Hydrogen bond interactions strongly affect vibrational properties and frequencies, the most common c...
Understanding on the spectroscopic properties of a functional group is essential to use it to detect...
Ab initio quantum chemistry calculations have been performed to probe the influence of hydrogen bond...
Ab initio quantum chemistry calculations have been performed to probe the influence of hydrogen bond...
Ab initio quantum chemistry calculations have been performed to probe the influence of hydrogen bond...
The effect of intermolecular H-bonding interactions on the local electronic structure of N-containin...
The effect of intermolecular H-bonding interactions on the local electronic structure of N-containin...
FT-IR (4000-400 cm(-1)) and FT-Raman (4000-200 cm(-1)) spectral measurements on solid 2,6-dichlorobe...
Vibrational spectroscopy is a powerful tool for characterizing the complex noncovalent interactions ...
Photoelectron spectra of HCN and DCN have been recorded at a resolution of 4.5 meV or better using H...
The effect of hydrogen on the electronic structure of amorphous carbon-nitrogen alloys (a-CNx) prepa...
We report the partitioning of the interaction-induced static electronic dipole (hyper)polarizabiliti...
In centrosymmetric molecules, like A(n+)M-(CN)(6)](n-) (where A is alkali metal cation), normally al...
Hydrogen bond interactions strongly affect vibrational properties and frequencies, the most common c...
In centrosymmetric molecules, like A(n+)M-(CN)(6)](n-) (where A is alkali metal cation), normally al...
Hydrogen bond interactions strongly affect vibrational properties and frequencies, the most common c...
Understanding on the spectroscopic properties of a functional group is essential to use it to detect...