Naphthalene diols: A new class of antioxidants intramolecular hydrogen bonding in catechols, naphthalene diols, and their aryloxyl radicals

被引:165
作者
Foti, MC
Johnson, ER
Vinqvist, MR
Wright, JS
Barclay, LRC
Ingold, KU
机构
[1] Mt Allison Univ, Dept Chem, Sackville, NB E4L 1G8, Canada
[2] Carleton Univ, Dept Chem, Ottawa, ON K1S 5B6, Canada
[3] Natl Res Council Canada, Ottawa, ON K1A 0R6, Canada
关键词
D O I
10.1021/jo020184v
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
1,8-Naphthalenediol, 5, and its 4-methoxy derivative, 6, were found to be potent H-atom transfer (HAT) compounds on the basis of their rate constants for H-atom transfer to the 2,2-di(4-t-octylphenyl)-1-picrylhydrazyl radical (DOPPH.), k(ArOH/DOPPH.), or as antioxidants during inhibited styrene autoxidation, k(ArH/ROO.), initiated with AIBN. The rate constants showed that 5 and 6 are more active HAT compounds than the ortho-diols, catechol, 1, 2,3-naphthalenediol, 2, and 3,5-di-tert-butylcatechol, 3. Compound 6 has almost twice the antioxidant activity, k(ArOH/ROO.) = 6.0 x 10(6) M-1 s(-1), of that of the vitamin E model compound, 2,2,5,7,8-pentamethyl-6-chromanol, 4. Calculations of the O-H bond dissociation enthalpies compared to those of phenols, (DeltaBDEs), of 1-6 predict a HAT order of reactivity of 2 < 1 < 3 approximate to 4 < 5 < 6 in general agreement with kinetic results. Calculations on the diols show that intramolecular H-bonding stabilizes the radicals formed on H-atom transfer more than it does the parent diols, and this effect contributes to the increased HAT activity of 5 and 6 compared to the activities of the catechols. For example, the increased stabilization due to the intramolecular H-bond of 5 radical over 5 parent of 8.6 kcal/mol was about double that of 2 radical over 2 parent of 4.6 kcal/mol. Linear free energy plots of log k(ArOH/DOPPH.) and log k(ArOH/ROO.) versus DeltaBDEs for compounds 1-6 along with available literature values for nonsterically hindered monophenols placed the compounds on common scales. The derived Evans-Polanyi constants from the plots for the two reactions, alpha(DOPPH.) = 0.48 > alpha(ROO.) = 0.32, gave the expected order, since the ROO. reaction is more exothermic than the DOPPH. reaction. Compound 6 is sufficiently reactive to react directly with oxygen, and it lies off the log k(ArOH/ROO.) versus DeltaBDE plot.
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页码:5190 / 5196
页数:7
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