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Heterogeneous Oxidation of Catechol
Elizabeth A. Pillar-Little
, Ruixin Zhou
,
Marcelo I. Guzman
Chemistry
Center for Appalachian Research in Environmental Sciences (UK-CARES)
Energy Research Priority Area
Research output
:
Contribution to journal
›
Article
›
peer-review
93
Scopus citations
Overview
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Chemistry
Catechol
100%
formation
60%
Arene
40%
Ozonolysis
40%
Solid Interface
40%
Semiquinone
40%
3-Hydroxy-Cis,cis-Muconic Acid
40%
Cis,cis-Muconic Acid
40%
Aromatic Structure
20%
Hydroxyl Radical
20%
Maleic Acid
20%
Coupling Reaction
20%
Glyoxylic Acid
20%
Electrospray Ionization Mass Spectrometry
20%
Baeyer-Villiger Oxidation
20%
Ozonide
20%
Hydroperoxide
20%
Pentenoic Acid
20%
Crotonic Acid
20%
Ion Chromatography
20%
Fossil Fuel
20%
Phenol
20%
Suspended Particulate Matter
20%
Biphenyl
20%
Pharmacology, Toxicology and Pharmaceutical Science
Catechol
100%
Muconic Acid
80%
Semiquinone
40%
Aromatic Hydrocarbon
40%
Burn
20%
Carbon Tetrachloride
20%
Carbon-Carbon Bond
20%
Maleic Acid
20%
Crotonic Acid Derivative
20%
Hydroperoxide
20%
Fossil Fuel
20%
Biphenyl
20%
Ozonide
20%
Glyoxylic Acid
20%
Hydroxyl Radical
20%
Electrospray Ionization
20%
Phenol
20%