We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stretching mode in pure water and in water-acetonitrile mixtures. The extent of hydrogen bonding is controlled by dissolving water at various concentrations in acetonitrile. Infrared frequency-resolved pump-probe measurements were used to determine the relative abundance of hydrogen-bonded versus non- hydrogen-bonded OH bonds in water-acetonitrile mixtures. Our data show that the main pathway for vibrational relaxation of the OH-stretching mode in pure water involves the overtone of the bending mode. Hydrogen bonding is found to accelerate the population relaxation from 3 ps in dilute solutions to 700 fs in neat water, as a result of increasing o...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
We present a study of the effect of hydrogen bonding on vibrational energy relaxation of the OH-stre...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...
IR pump-probe spectroscopy is used to study the effect of hydrogen bonding on the vibrational energy...