Structure-dependent reactivity of Criegee intermediates studied with spectroscopic methods

Criegee intermediates are very reactive carbonyl oxides that are formed in reactions of unsaturated hydrocarbons with ozone (ozonolysis). Recently, Criegee intermediates have gained significant attention since a new preparation method has been reported in 2012, which employs the reaction of iodoalky...

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Veröffentlicht in:Chemical Society reviews 2017-12, Vol.46 (24), p.7483-7497
Hauptverfasser: Jr-Min Lin, Jim, Chao, Wen
Format: Artikel
Sprache:eng
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Zusammenfassung:Criegee intermediates are very reactive carbonyl oxides that are formed in reactions of unsaturated hydrocarbons with ozone (ozonolysis). Recently, Criegee intermediates have gained significant attention since a new preparation method has been reported in 2012, which employs the reaction of iodoalkyl radical with molecular oxygen: for instance, CH 2 I + O 2 → CH 2 OO + I. This new synthesis route can produce Criegee intermediates with a high number density, which allows direct detection of the Criegee intermediate via various spectroscopic tools, including vacuum UV photoionization mass spectrometry, absorption and action spectroscopy in the UV and IR regions, and microwave spectroscopy. Criegee intermediates have been thought to play important roles in atmospheric chemistry, such as in OH radical formation as well as oxidation of atmospheric gases such as SO 2 , NO 2 , volatile organic compounds, organic and inorganic acids, and even water. These reactions are relevant to acid rain and aerosol formation. Kinetics data including rate coefficients, product yields and their temperature and pressure dependences are important for understanding and modeling relevant atmospheric chemistry. In fundamental physical chemistry, Criegee intermediates have unique and interesting features, which have been partially revealed through spectroscopic, kinetic, and dynamic investigations. Although previous review articles have discussed Criegee intermediates, new data and knowledge on Criegee intermediates are still being accumulated. In this tutorial review, we have focused on structure-dependent reactivity of Criegee intermediates and various spectroscopic tools that have been utilized to probe the kinetics of Criegee intermediates. Criegee intermediates can be prepared by two methods and may play important roles in atmospheric chemistry. Anti-type Criegee intermediates react quickly with water dimer; Syn-type Criegee intermediates may undergo thermal decomposition via intramolecular hydrogen atom tunneling. In addition, the pros and cons of each spectroscopic method in probing Criegee intermediates in kinetic experiments will also be discussed.
ISSN:0306-0012
1460-4744
DOI:10.1039/c7cs00336f