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Surprising Stability of Larger Criegee Intermediates on Aqueous Interfaces.
Jie Zhong1, Manoj Kumar1, Chong Q Zhu1
1Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE, 68588, USA.
Larger Criegee intermediates, unlike the simplest form, are stable in water due to hydrophobic groups. These findings reveal the crucial role of substituents in Criegee intermediate reactivity at air-water interfaces.
Area of Science:
- Atmospheric Chemistry
- Organic Chemistry
- Biochemistry
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