Collisional deactivation of highly vibrationally excited gas phase toluene‐d8 and benzene‐d6 pumped at 248 nm, has been investigated by monitoring the time resolved infrared fluorescence from the C–D stretch modes near 4.3 μm. For toluene‐d8, energy transfer data were obtained for about 20 collider gases, including unexcited toluene‐d8; for benzene‐d6, only a few colliders were investigated. For both systems the data were analyzed by an inversion technique that converts the fluorescence decay to the bulk average energy, from which is calculated the average energy transferred per collision, 〈〈ΔE〉〉inv. Data obtained earlier for benzene‐d0 were reanalyzed and the revised results are reported. Results for both normal and deuterated excited spec...
We report (nanosecond) resonance-enhanced multiphoton ionization (REMPI), (nanosecond) zero-kinetic-...
The time dependent thermal lensing technique has been used to measure the vibrational relaxation of ...
We report (nanosecond) resonance-enhanced multiphoton ionization (REMPI), (nanosecond) zero-kinetic-...
The collisional loss of vibrational energy from gas‐phase toluene, pumped by a pulsed KrF laser oper...
The time‐resolved infrared fluorescence technique has been used to study V–V and V–T/R energy transf...
Time-resolved two-color infrared fluorescence (IRF) from highly vibrationally excited benzene and be...
The time-resolved infrared fluorescence (IRF) technique has been used to study the vibrational deact...
Recently, Gilbert and Zare proposed that dynamical quantum effects might explain the poor performanc...
Recently, Gilbert and Zare proposed that dynamical quantum effects might explain the poor performanc...
[[abstract]]The vibrational energy dependence, H and D atom isotope effects, and the mass effects in...
Infrared fluorescence (IRF) was observed from highly vibrationally excited gas phase aromatic molecu...
© 1998 American Chemical SocietyHighly excited hexafluorobenzene (HFB) molecules in the electronic g...
Energy transfer and bond dissociation of C-Hmethyl and C-Hring in excited toluene in the collision w...
We commence by presenting an overview of the assignment of the vibrational frequencies of the toluen...
Time resolved Fourier transform emission spectroscopy has been developed to study highly vibrational...
We report (nanosecond) resonance-enhanced multiphoton ionization (REMPI), (nanosecond) zero-kinetic-...
The time dependent thermal lensing technique has been used to measure the vibrational relaxation of ...
We report (nanosecond) resonance-enhanced multiphoton ionization (REMPI), (nanosecond) zero-kinetic-...
The collisional loss of vibrational energy from gas‐phase toluene, pumped by a pulsed KrF laser oper...
The time‐resolved infrared fluorescence technique has been used to study V–V and V–T/R energy transf...
Time-resolved two-color infrared fluorescence (IRF) from highly vibrationally excited benzene and be...
The time-resolved infrared fluorescence (IRF) technique has been used to study the vibrational deact...
Recently, Gilbert and Zare proposed that dynamical quantum effects might explain the poor performanc...
Recently, Gilbert and Zare proposed that dynamical quantum effects might explain the poor performanc...
[[abstract]]The vibrational energy dependence, H and D atom isotope effects, and the mass effects in...
Infrared fluorescence (IRF) was observed from highly vibrationally excited gas phase aromatic molecu...
© 1998 American Chemical SocietyHighly excited hexafluorobenzene (HFB) molecules in the electronic g...
Energy transfer and bond dissociation of C-Hmethyl and C-Hring in excited toluene in the collision w...
We commence by presenting an overview of the assignment of the vibrational frequencies of the toluen...
Time resolved Fourier transform emission spectroscopy has been developed to study highly vibrational...
We report (nanosecond) resonance-enhanced multiphoton ionization (REMPI), (nanosecond) zero-kinetic-...
The time dependent thermal lensing technique has been used to measure the vibrational relaxation of ...
We report (nanosecond) resonance-enhanced multiphoton ionization (REMPI), (nanosecond) zero-kinetic-...