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Aerobic Oxidation of Alkylaromatics using a LipophilicN-Hydroxyphthalimide: Overcoming the Industrial Limit of Catalyst Solubility
- Publication Year :
- 2014
-
Abstract
- 4,4′-(4,4′-Isopropylidenediphenoxy)bis(N-hydroxyphthalimide), which is a new lipophilic analogue of N-hydroxyphthalimide, can act as an effective catalyst in the aerobic oxidation of alkylaromatics under reduced amounts of polar cosolvent. The catalyst was selected on the basis of an in-depth study of the influence that substituents on the aromatic ring of N-hydroxyphthalimide exert on determining the NO[BOND]H bond dissociation energy (BDE). BDE values for a range of model molecules are calculated by DFT and measured by EPR spectroscopy. The new catalyst can be successfully employed in the aerobic oxidation of cumene, ethylbenzene, and cyclohexylbenzene, affording, in all cases, good conversions and high selectivity for the corresponding hydroperoxide. The effect of solvent, catalyst, and temperature has also been investigated.
- Subjects :
- Cumene
General Chemical Engineering
Phthalimides
organocatalysi
Ethylbenzene
hydrogen atom transfer
Catalysis
chemistry.chemical_compound
aerobic oxidation
Environmental Chemistry
Molecule
Organic chemistry
Industry
General Materials Science
Solubility
HYDROPEROXIDES
Bond-dissociation energy
SUBSTITUENT EFFECTS
Aerobiosis
Solvent
General Energy
chemistry
Organocatalysis
Quantum Theory
Hydrophobic and Hydrophilic Interactions
Oxidation-Reduction
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....103af0a140c6f5ba6942baa36e08ec88