TY - JOUR
T1 - Rate constants for the gas-phase reactions of OH radicals with nitroethene, 3-nitropropene and 1-nitrocyclohexene at 298 K and 1 atm
AU - Nielsen, Ole J.
AU - Jørgensen, Ole
AU - Donlon, Michael
AU - Sidebottom, Howard W.
AU - O'Farrell, Denis J.
AU - Treacy, Jack
PY - 1990/5/4
Y1 - 1990/5/4
N2 - Rate constants for the reactions of OH radicals with CH2=CHNO2, CH2=CH-CH2NO2 and c-C6H9NO2 have been determined at 298 ± 2 K and a total pressure of 1 atm. Rate data for the reaction of OH radicals with CH2=CH2, CH2=CH-CH3 and c-C6H10 were also obtained for comparison purposes. The OH rate data for all the compounds except c-C6H9NO2 were obtained using the absolute technique of pulse radiolysis combined with kinetic UV spectroscopy. Water-argon mixtures were irradiated and the OH kinetics recorded by following the transient light absorption at 309 nm. The rate constant for the OH + c-C6H9NO2 reaction was derived using a conventional photolytic relative-rate method. The results are discussed in terms of structure-reactivity relationships.
AB - Rate constants for the reactions of OH radicals with CH2=CHNO2, CH2=CH-CH2NO2 and c-C6H9NO2 have been determined at 298 ± 2 K and a total pressure of 1 atm. Rate data for the reaction of OH radicals with CH2=CH2, CH2=CH-CH3 and c-C6H10 were also obtained for comparison purposes. The OH rate data for all the compounds except c-C6H9NO2 were obtained using the absolute technique of pulse radiolysis combined with kinetic UV spectroscopy. Water-argon mixtures were irradiated and the OH kinetics recorded by following the transient light absorption at 309 nm. The rate constant for the OH + c-C6H9NO2 reaction was derived using a conventional photolytic relative-rate method. The results are discussed in terms of structure-reactivity relationships.
UR - http://www.scopus.com/inward/record.url?scp=0001661529&partnerID=8YFLogxK
U2 - 10.1016/0009-2614(90)85618-M
DO - 10.1016/0009-2614(90)85618-M
M3 - Journal article
AN - SCOPUS:0001661529
SN - 0009-2614
VL - 168
SP - 319
EP - 323
JO - Chemical Physics Letters
JF - Chemical Physics Letters
IS - 3-4
ER -