Reactive intermediates. Some chemistry of quinone methides
Quinone methides were produced in aqueous solution by photochemical dehydration of o-hydroxybenzyl alcohols ( -HOC CHROH; R = H, C , 4-CH OC ), and flash photolytic techniques were used to examine their rehydration back to starting substrate as well as their interaction with bromide and thiocyanate...
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Veröffentlicht in: | Pure and applied chemistry 2000-01, Vol.72 (12), p.2299-2308 |
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Hauptverfasser: | , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Quinone methides were produced in aqueous solution by photochemical dehydration of o-hydroxybenzyl alcohols (
-HOC
CHROH; R = H, C
, 4-CH
OC
), and flash photolytic techniques were used to examine their rehydration back to starting substrate as well as their interaction with bromide and thiocyanate ions. These reactions are acid-catalyzed and show inverse isotope effects (k
/k
< 1), indicating that they occur through preequilibrium protonation of the quinone methide on its carbonyl carbon atom followed by rate-determining capture of the benzyl carbocations so formed by H
O, Br
, or SCN
. With some quinone methides (R = C
and 4-CH
OC
) this acid catalysis could be saturated, and analysis of the data obtained in the region of saturation for the example with R = 4-CH
OC
produced both the equilibrium constant for the substrate protonation step and the rate constant for the rate-determining step. Energy relationships comparing the quinone methides with their benzyl alcohol precursors are derived. |
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ISSN: | 0033-4545 1365-3075 |
DOI: | 10.1351/pac200072122299 |