The highly selective aerobic oxidation of cyclohexane to cyclohexanone and cyclohexanol over V2O5@TiO2 under simulated solar light irradiation
Author:
Affiliation:
1. Beijing National Laboratory for Molecular Sciences
2. Key Laboratory of Colloid and Interface and Thermodynamics
3. Institute of Chemistry
4. Chinese Academy of Sciences
5. Beijing 100190
Abstract
V2O5@TiO2 is very efficient for the photocatalytic oxidation of cyclohexane to cyclohexanone and cyclohexanol under simulated solar light irradiation.
Publisher
Royal Society of Chemistry (RSC)
Subject
Pollution,Environmental Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2017/GC/C6GC02748B
Reference43 articles.
1. Selective photo(catalytic)-oxidation of cyclohexane: Effect of wavelength and TiO2 structure on product yields
2. Understanding and exploiting C–H bond activation
3. Chemistry: Activating the C–H bond
4. Highly selective and direct oxidation of cyclohexane to cyclohexanone over vanadium exchanged NaY at room temperature under solvent-free conditions
5. Activation of C−H Bonds by Metal Complexes
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