A two transition state model is applied to the prediction of the isomeric branching in the addition of hydroxyl radical to isoprene. The outer transition state is treated with phase space theory fitted to long-range transition state theory calculations on an electrostatic potential energy surface. High-level quantum chemical estimates are applied to the treatment of the inner transition state. A one-dimensional master equation based on an analytic reduction from two-dimensions for a particular statistical assumption about the rotational part of the energy transfer kernel is employed in the calculation of the pressure dependence of the addition process. We find that an accurate treatment of the two separate transition state regions, at the e...
The theory for unimolecular reactions described in part 1 is applied to the recombination of methyl ...
With an annual emission of about 500 Tg, isoprene is an important molecule in the atmosphere. While ...
A quantum chemical investigation is presented for the determination of accurate kinetic and thermody...
A two transition state model is applied to the study of the addition of hydroxyl radical to ethylene...
As a sequel to our communication on a proposed new isoprene oxidation mechanism aiming to rationaliz...
The reaction of the OH radical with isoprene, C5H8 (R1), has been studied over the temperature range...
Isoprene, an abundant biogenic hydrocarbon, is readily oxidized by the hydroxyl radical, significant...
Oxidation of isoprene by the hydroxyl radical leads to tropospheric ozone formation. Consequently, a...
Oxidation of isoprene by the hydroxyl radical leads to tropospheric ozone formation. Consequently, a...
The reaction of the OH radical with isoprene, C5H8 (R1), has been studied over the temperature range...
Several ab initio studies have focused on the minimum energy path region of the hydroperoxyl potenti...
Isoprene is an important molecule in atmospheric chemistry. Belonging to a class of molecules known...
A quantum chemical investigation is presented for the determination of accurate kinetic and thermody...
The theory for unimolecular reactions described in part 1 is applied to the recombination of methyl ...
We analyze the isopropyl + 02 reaction system using thermochemical Transition State Theory (TST), mo...
The theory for unimolecular reactions described in part 1 is applied to the recombination of methyl ...
With an annual emission of about 500 Tg, isoprene is an important molecule in the atmosphere. While ...
A quantum chemical investigation is presented for the determination of accurate kinetic and thermody...
A two transition state model is applied to the study of the addition of hydroxyl radical to ethylene...
As a sequel to our communication on a proposed new isoprene oxidation mechanism aiming to rationaliz...
The reaction of the OH radical with isoprene, C5H8 (R1), has been studied over the temperature range...
Isoprene, an abundant biogenic hydrocarbon, is readily oxidized by the hydroxyl radical, significant...
Oxidation of isoprene by the hydroxyl radical leads to tropospheric ozone formation. Consequently, a...
Oxidation of isoprene by the hydroxyl radical leads to tropospheric ozone formation. Consequently, a...
The reaction of the OH radical with isoprene, C5H8 (R1), has been studied over the temperature range...
Several ab initio studies have focused on the minimum energy path region of the hydroperoxyl potenti...
Isoprene is an important molecule in atmospheric chemistry. Belonging to a class of molecules known...
A quantum chemical investigation is presented for the determination of accurate kinetic and thermody...
The theory for unimolecular reactions described in part 1 is applied to the recombination of methyl ...
We analyze the isopropyl + 02 reaction system using thermochemical Transition State Theory (TST), mo...
The theory for unimolecular reactions described in part 1 is applied to the recombination of methyl ...
With an annual emission of about 500 Tg, isoprene is an important molecule in the atmosphere. While ...
A quantum chemical investigation is presented for the determination of accurate kinetic and thermody...