The 304 nm photodissociation of the C-H symmetric stretch excited CH3I [v (1) = 1, v (2) = 0] (v (1) denotes the C-H symmetric stretch mode, and v (2) denotes the umbrella mode) is studied with our simple photofragment translational spectrometer. An IR laser is used to excite the ground state CH3I [0, 0] to the C-H symmetric stretch excited CH3I [1, 0]. With IR laser OFF and ON, the fractions of photofragments CH3 (nu (1), nu (2)) from the 304 nm photodissociation of CH3I [1, 0] have been determined through the photofragment translational spectra (PTS) from measuring I and I* and also through the PTS from measuring CH3 (0, 0) (1, 0) (0, 1) and (1, 1). The experimental results show that the C-H symmetric stretch vibration (v (1) = 1) in pare...
The photofragmentation pathways of chemically reactive free radicals have been examined using the te...
The photodissociation dynamics of ICl has been studied near 304 and 280 nm on a simple miniature tim...
$^{1}$ B.A. Huber, T. M. Miller, P.C. Cosby, H. D. Zeman, R. L. Leon, J. T. Moseley, and J. R. Peter...
The photodissociation dynamics of CH3I at 225 nm is studied on our high resolution mini-TOF photofra...
The photodissociation dynamics of CH3I from 277 to 304 nm is studied with our mini-TOF photofragment...
From the photofragment translational spectra of C-H symmetric stretch excited CH3I [v(1) = 1, v(2) =...
The photodissociation dynamics of propyl iodides n-C3H7I and i-C3H7I near 280 and 304 nm has been in...
The photodissociation of CF3I at 248 nm was performed on our high-resolution photofragment translati...
The photodissociation dynamics of CF3I at 238 nm was studied using our high resolution mini-TOF (tim...
Using a very weak electric field to accelerate the photofragment ions, we have constructed a very si...
The photofragmentation of C6H5I at 266 nn is investigated on the universal crossed molecular beam ma...
Photodissociation dynamics of C2F5I near 280 and 304 nm has been investigated on a small and simple ...
Chapter 1 outlines the focus of this thesis, understanding the mechanism of breaking achemical bond ...
The photodissociation spectroscopy and dynamics resulting from excitation of the B ˜ 2A9ÃX ˜ 2A9 tra...
Photodissociation of the allyl radical, CH2CHCH2, has been studied using the method of molecular bea...
The photofragmentation pathways of chemically reactive free radicals have been examined using the te...
The photodissociation dynamics of ICl has been studied near 304 and 280 nm on a simple miniature tim...
$^{1}$ B.A. Huber, T. M. Miller, P.C. Cosby, H. D. Zeman, R. L. Leon, J. T. Moseley, and J. R. Peter...
The photodissociation dynamics of CH3I at 225 nm is studied on our high resolution mini-TOF photofra...
The photodissociation dynamics of CH3I from 277 to 304 nm is studied with our mini-TOF photofragment...
From the photofragment translational spectra of C-H symmetric stretch excited CH3I [v(1) = 1, v(2) =...
The photodissociation dynamics of propyl iodides n-C3H7I and i-C3H7I near 280 and 304 nm has been in...
The photodissociation of CF3I at 248 nm was performed on our high-resolution photofragment translati...
The photodissociation dynamics of CF3I at 238 nm was studied using our high resolution mini-TOF (tim...
Using a very weak electric field to accelerate the photofragment ions, we have constructed a very si...
The photofragmentation of C6H5I at 266 nn is investigated on the universal crossed molecular beam ma...
Photodissociation dynamics of C2F5I near 280 and 304 nm has been investigated on a small and simple ...
Chapter 1 outlines the focus of this thesis, understanding the mechanism of breaking achemical bond ...
The photodissociation spectroscopy and dynamics resulting from excitation of the B ˜ 2A9ÃX ˜ 2A9 tra...
Photodissociation of the allyl radical, CH2CHCH2, has been studied using the method of molecular bea...
The photofragmentation pathways of chemically reactive free radicals have been examined using the te...
The photodissociation dynamics of ICl has been studied near 304 and 280 nm on a simple miniature tim...
$^{1}$ B.A. Huber, T. M. Miller, P.C. Cosby, H. D. Zeman, R. L. Leon, J. T. Moseley, and J. R. Peter...