
Journal of Physical Chemistry p. 2413 - 2419 (1990)
Update date:2022-08-10
Topics:
Barnes, Ian
Bastian, Volker
Becker, Karl H.
Tong, Zhu
Rate constants for the reactions of NO3 with a number of aliphatic mono- and dialkenes and monoterpenes have been determined in a 420 l reaction chamber at 1-bar total pressure of synthetic air by 298 K with a relative kinetic method.The products of these reactions have been investigated also at 1-bar total pressure of synthetic air with in situ FT-IR spectrometry and gas chromatography.In all cases, the initial formation of thermally unstable nitrooxy-peroxynitrate-type compounds containing the difunctional group -CH(OONO2)-CH(ONO2)- has been observed.The experimental results are consistent with a mechanism involving the formation of nitrooxy-alkoxy radicals, -CH(O)-CH(ONO2)-, via the self-reaction of the nitrooxy-peroxy radicals.The further reactions of the nitrooxy-alkoxy radicals then determine the final products.The main reaction pathways are (i) reaction with O2 to form nitrooxy-aldehydes or -ketones and HO2 and (II) thermal decomposition forming aldehydes/ketones and NO2.The mechanisms leading to the final products are discussed, and their possible relevance for the chemistry in the troposphere is considered.
View More
Doi:10.1016/0022-328X(93)80004-U
(1993)Doi:10.1021/jo502369d
(2015)Doi:10.1002/anie.201208392
(2013)Doi:10.1021/acs.orglett.5b00300
(2015)Doi:10.1016/j.jorganchem.2015.05.019
(2015)Doi:10.1016/j.tetlet.2004.11.075
(2005)