The reaction of Criegee intermediates (CI) with ozone, O3, has been re-examined with higher levels of theory, following earlier reports that O3 could be a relevant sink of CI. The updated rate coefficients indicate that the reaction is somewhat slower than originally anticipated, and is not expected to play a role in the troposphere. In experimental (laboratory) conditions, the CI + O3 reaction can be important. The reaction of CI with ROOH intermediates is found to proceed through a pre-reactive complex, and the insertion process allows for the formation of oligomers in agreement with recent experimental observations. The CI + ROOH reaction also allows for the formation of ether oxides, which don't react with H2O but can oxidize SO2. Under...
Criegee intermediates (CIs) are the key intermediates in the ozonolysis reactions of alkenes, which ...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Criegee intermediates (CIs) are a class of reactive radicals that are thought to play a key role in ...
The reaction of Criegee intermediates (CI) with ozone, O3, has been re-examined with higher levels o...
The reaction of Criegee intermediates with a number of coreactants is examined using theoretical met...
The chemistry of carbonyl oxides, known as Criegee intermediates, is central to many aspects of trop...
Density functional theory and transition state theory rate constant calculations have been performed...
Carbonyl oxides, or Criegee intermediates, formed in ozonolysis, are very difficult to isolate and s...
We have investigated the reaction of the one-carbon stabilized Criegee intermediate (H<sub>2</sub>CO...
The reactions of twelve carbonyl oxides or Criegee intermediates with the water monomer and with the...
Peroxy radicals and carbonyl oxides (Criegee intermediates) are produced in the troposphere during O...
Ozonolysis of unsaturated hydrocarbons (VOCs) is one of the main oxidation processes in the atmosphe...
Although carbonyl oxides, "Criegee intermediates," have long been implicated in tropospheric oxidati...
The gas-phase reaction of alkenes with ozone has been the subject of considerable research interest ...
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 ...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Criegee intermediates (CIs) are a class of reactive radicals that are thought to play a key role in ...
The reaction of Criegee intermediates (CI) with ozone, O3, has been re-examined with higher levels o...
The reaction of Criegee intermediates with a number of coreactants is examined using theoretical met...
The chemistry of carbonyl oxides, known as Criegee intermediates, is central to many aspects of trop...
Density functional theory and transition state theory rate constant calculations have been performed...
Carbonyl oxides, or Criegee intermediates, formed in ozonolysis, are very difficult to isolate and s...
We have investigated the reaction of the one-carbon stabilized Criegee intermediate (H<sub>2</sub>CO...
The reactions of twelve carbonyl oxides or Criegee intermediates with the water monomer and with the...
Peroxy radicals and carbonyl oxides (Criegee intermediates) are produced in the troposphere during O...
Ozonolysis of unsaturated hydrocarbons (VOCs) is one of the main oxidation processes in the atmosphe...
Although carbonyl oxides, "Criegee intermediates," have long been implicated in tropospheric oxidati...
The gas-phase reaction of alkenes with ozone has been the subject of considerable research interest ...
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 ...
Ozonolysis is an important sink of alkenes in Earth’s troposphere, leading to the formation of highl...
Criegee intermediates (CIs) are a class of reactive radicals that are thought to play a key role in ...