The chemistry of carbonyl oxides, known as Criegee intermediates, is central to many aspects of tropospheric chemistry. For decades it has been known that these reactive species, whose electronic structure contains zwitterionic and biradical character, are formed in the ozonolysis of alkenes. However it is only recently that direct measurements of their reaction kinetics have become possible. In this perspective we describe the most recent progress in understanding the reactivity of these historically elusive molecules, explore the atmospheric chemistry implications of new experimental discoveries, and propose important new areas for investigation.</p
The reaction of Criegee intermediates with a number of coreactants is examined using theoretical met...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Alkene ozonolysis generates Criegee intermediates (carbonyl oxides) that decay to several products i...
In the context of tropospheric chemistry, Criegee intermediates denote carbonyl oxides with biradica...
Criegee intermediates (CIs) are the key intermediates in the ozonolysis reactions of alkenes, which ...
The reaction of Criegee intermediates (CI) with ozone, O3, has been re-examined with higher levels o...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Carbonyl oxides, or Criegee intermediates, formed in ozonolysis, are very difficult to isolate and s...
34 pags., 15 figs., 3 tabs.Carbonyl oxides, RRCOO, alternatively known as Criegee intermediates (CIs...
Peroxy radicals and carbonyl oxides (Criegee intermediates) are produced in the troposphere during O...
Criegee intermediates are reactive species formed in the ozonolysis of alkenes. Their subsequent che...
The reactions of twelve carbonyl oxides or Criegee intermediates with the water monomer and with the...
Ozonolysis of alkenes is a key reaction in the atmosphere, playing an important role in determining ...
Although carbonyl oxides, "Criegee intermediates," have long been implicated in tropospheric oxidati...
Density functional theory and transition state theory rate constant calculations have been performed...
The reaction of Criegee intermediates with a number of coreactants is examined using theoretical met...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Alkene ozonolysis generates Criegee intermediates (carbonyl oxides) that decay to several products i...
In the context of tropospheric chemistry, Criegee intermediates denote carbonyl oxides with biradica...
Criegee intermediates (CIs) are the key intermediates in the ozonolysis reactions of alkenes, which ...
The reaction of Criegee intermediates (CI) with ozone, O3, has been re-examined with higher levels o...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Carbonyl oxides, or Criegee intermediates, formed in ozonolysis, are very difficult to isolate and s...
34 pags., 15 figs., 3 tabs.Carbonyl oxides, RRCOO, alternatively known as Criegee intermediates (CIs...
Peroxy radicals and carbonyl oxides (Criegee intermediates) are produced in the troposphere during O...
Criegee intermediates are reactive species formed in the ozonolysis of alkenes. Their subsequent che...
The reactions of twelve carbonyl oxides or Criegee intermediates with the water monomer and with the...
Ozonolysis of alkenes is a key reaction in the atmosphere, playing an important role in determining ...
Although carbonyl oxides, "Criegee intermediates," have long been implicated in tropospheric oxidati...
Density functional theory and transition state theory rate constant calculations have been performed...
The reaction of Criegee intermediates with a number of coreactants is examined using theoretical met...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Alkene ozonolysis generates Criegee intermediates (carbonyl oxides) that decay to several products i...