We analyse the OH vibrational signatures of 56 structurally unique water molecules and 34 structurally unique hydroxide ions in thin water films on MgO(001) and CaO(001), using DFT-generated anharmonic potential energy surfaces. We find that the OH stretching frequencies of intact water molecules on the surface are always downshifted with respect to the gas-phase species while the OH− groups are either upshifted or downshifted. Despite these differences, the main characteristics of the frequency shifts for all three types of surface OH groups (OHw, OsH and OHf) can be accounted for by one unified expression involving the in situ electric field from the surrounding environment, and the gas-phase molecular properties of the vibrating species ...
We study the signatures of the OH stretch vibrations at the basal surface of ice using heterodyne-de...
Author Institution: Department of Chemistry and Biochemistry, The Ohio State University, Columbus, O...
Author Institution: Department of Chemistry, University of OtagoWe have calculated fundamental and o...
We analyse the OH vibrational signatures of 56 structurally unique water molecules and 34 structural...
Many chemical and physical phenomena in nature, in industrial processes, and in our daily lives take...
Robust correlation curves are essential to decipher structural information from IR-vibrational spect...
Theoretical and experimental vibrational signatures of H2O and OH- (dissociated water) adsorbed on s...
We study the resonant interaction of the OH stretch vibrations of water molecules at the surfaces of...
Interfacial water structures of aqueous dimethyl sulfoxide (DMSO) and methanesulfonic acid (MSA) wer...
There are two types of bands in the OH stretch region of the vibrational spectra of hydrogen-bonded ...
The infrared spectra of MgO smoke exposed to water are compared to high-resolution electron energy l...
Author Institution: Department of Chemistry, University of OtagoWe have calculated fundamental and o...
We report the vibrational and orientational dynamics of water molecules in isotopically diluted NaOH...
International audienceWe report a density-functional theory (DFT)-based study of the interface of bu...
We report on a two-color mid-infrared pump-probe spectroscopic study of the dynamics of the OH stret...
We study the signatures of the OH stretch vibrations at the basal surface of ice using heterodyne-de...
Author Institution: Department of Chemistry and Biochemistry, The Ohio State University, Columbus, O...
Author Institution: Department of Chemistry, University of OtagoWe have calculated fundamental and o...
We analyse the OH vibrational signatures of 56 structurally unique water molecules and 34 structural...
Many chemical and physical phenomena in nature, in industrial processes, and in our daily lives take...
Robust correlation curves are essential to decipher structural information from IR-vibrational spect...
Theoretical and experimental vibrational signatures of H2O and OH- (dissociated water) adsorbed on s...
We study the resonant interaction of the OH stretch vibrations of water molecules at the surfaces of...
Interfacial water structures of aqueous dimethyl sulfoxide (DMSO) and methanesulfonic acid (MSA) wer...
There are two types of bands in the OH stretch region of the vibrational spectra of hydrogen-bonded ...
The infrared spectra of MgO smoke exposed to water are compared to high-resolution electron energy l...
Author Institution: Department of Chemistry, University of OtagoWe have calculated fundamental and o...
We report the vibrational and orientational dynamics of water molecules in isotopically diluted NaOH...
International audienceWe report a density-functional theory (DFT)-based study of the interface of bu...
We report on a two-color mid-infrared pump-probe spectroscopic study of the dynamics of the OH stret...
We study the signatures of the OH stretch vibrations at the basal surface of ice using heterodyne-de...
Author Institution: Department of Chemistry and Biochemistry, The Ohio State University, Columbus, O...
Author Institution: Department of Chemistry, University of OtagoWe have calculated fundamental and o...