Article ID Journal Published Year Pages File Type
9575386 Chemical Physics 2005 10 Pages PDF
Abstract
The conformers of the 2-, 3- and 4-substituted phenolic cation radicals, 2-X-, 3-X- and 4-X-ArOH+, and the respective phenoxyl radicals, ArO, the intramolecular hydrogen bond strength (ΔHintra) estimate along with the electronic effects of five electron withdrawing (EWG) and eight electron donating groups (EDG) on the gas-phase O-H proton dissociation enthalpies, (PDEs), of the short-lived, 2-X-ArOH+, (involved in the single-electron transfer antioxidant mechanism), are studied at the DFT/B3LYP level of theory. EWG result to smaller PDEs, hence to stronger acidity; EDG to weaker acidity. The deprotonation antioxidant mechanistic step is not a rate-controlling step for 2-X-ArOH to scavenge free radicals. Approximate estimations of the ΔPDEs (hence acidities as well) can be derived from calculated structural and/or vibrational frequency values. ΔHintras correlate reasonably with geometrical parameters for the closed-shell, neutral counterparts, in contrast with previous estimates.
Related Topics
Physical Sciences and Engineering Chemistry Physical and Theoretical Chemistry
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