Keto-enol/enolate equilibria in the isochroman-4-one system. Effect of a beta-oxygen substituent

Citation
Y. Chiang et al., Keto-enol/enolate equilibria in the isochroman-4-one system. Effect of a beta-oxygen substituent, J AM CHEM S, 123(47), 2001, pp. 11562-11569
Citations number
38
Categorie Soggetti
Chemistry & Analysis",Chemistry
Journal title
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
ISSN journal
00027863 → ACNP
Volume
123
Issue
47
Year of publication
2001
Pages
11562 - 11569
Database
ISI
SICI code
0002-7863(20011128)123:47<11562:KEITIS>2.0.ZU;2-B
Abstract
The enol of 1-tetralone was generated flash photolytically, and rates of it s ketonization were measured in aqueous HClO4 and NaOH solutions as well as in CH3CO2H, H2PO4-, (CH2OH)(3)CNH3+, and NH4+ buffers. The enol of isochro man-4-one was also generated, by hydrolysis of its potassium salt and trime thylsilyl ether, and rates of its ketonization were measured in aqueous HCl O4 and NaOH. Rates of enolization of the two ketones were measured as well. Combination of the enolization and ketonization data for isochroman-4-one gave the keto-enol equilibrium constant pK(E) = 5.26, the acidity constant of the enol ionizing as an oxygen acid pQ(a)(E) = 10.14, and the acidity co nstant of the ketone ionizing as a carbon acid pQ(a)(K) = 15.40. Comparison of these results with those for 1-tetralone shows that the beta -oxygen su bstituent in isochroman-4-one raises all three of these constants: K-E by 2 orders of magnitude, Q(a)(E) by not quite 1 order of magnitude, and Q(a)(K ) by nearly 3 orders of magnitude. The beta -oxygen substituent also retard s the rate of hydronium-ion-catalyzed ketonization by more than 3 orders of magnitude. The origins of these substituent effects are discussed.