Abstract
The coupling of 5-methylpyrogallol (6) with 4-methyl-o-quinone (7) in an aprotic solvent (CH2Cl2) efficiently afforded a key intermediate 8 having a bicyclo[3.2.1] ring whose structure had been proposed for fifty years. Subsequent
ring-opening of 8 by the addition of H2O, air oxidation and decarboxylation produced the benzotropolone 10 in good yield.
Key words
bicyclic compounds - oxidations - benzotropolones - quinones - theaflavins
References
<A NAME="RU25605ST-1A">1a</A>
Roberts EAH.
J. Sci. Food Agric.
1958,
9:
381
<A NAME="RU25605ST-1B">1b</A>
Roberts EAH.
Myers M.
J. Sci. Food Agric.
1959,
10:
176
<A NAME="RU25605ST-1C">1c</A>
Roberts EAH.
The Chemistrys of Flavonoid Compounds
Geissmann TA.
Pergamon Press;
Oxford:
1962.
p.468
<A NAME="RU25605ST-2A">2a</A>
Takino Y.
Imagawa H.
Agric. Biol. Chem.
1963,
27:
319
<A NAME="RU25605ST-2B">2b</A>
Takino Y.
Imagawa H.
Horikawa H.
Tanaka A.
Agric. Biol. Chem.
1964,
28:
64
<A NAME="RU25605ST-2C">2c</A>
Takino Y.
Ferretti A.
Flanagan V.
Gianturco M.
Vogel M.
Tetrahedron Lett.
1965,
4019
<A NAME="RU25605ST-2D">2d</A>
Takino Y.
Ferretti A.
Flanagan V.
Gianturco MA.
Vogel M.
Can. J. Chem.
1967,
45:
1949
<A NAME="RU25605ST-3">3</A>
Brown AG.
Falshaw CP.
Haslam E.
Holmes A.
Ollis WD.
Tetrahedron Lett.
1966,
1193
<A NAME="RU25605ST-4">4</A>
Collier PD.
Bryce T.
Mallows R.
Thomas PE.
Frost DJ.
Korver O.
Wilkins CK.
Tetrahedron
1973,
29:
125
<A NAME="RU25605ST-5">5</A>
Haslam E.
Phytochemistry
2003,
64:
61
<A NAME="RU25605ST-6">6</A>
Girard A.
Chem. Ber.
1869,
2:
562
<A NAME="RU25605ST-7A">7a</A>
Evans TW.
Dehn WM.
J. Am. Chem. Soc.
1930,
52:
3647
<A NAME="RU25605ST-7B">7b</A>
Caunt D.
Crow WD.
Haworth RD.
Vodoz CA.
J. Chem. Soc.
1950,
1631
<A NAME="RU25605ST-7C">7c</A>
Caunt D.
Crow WD.
Haworth RD.
J. Chem. Soc.
1951,
1313
<A NAME="RU25605ST-7D">7d</A>
Murakami M.
Suzuki K.
Mishima E.
Nippon Kagaku Zasshi
1954,
75:
620
<A NAME="RU25605ST-7E">7e</A>
Pauson PL.
Chem. Rev.
1955,
55:
9
<A NAME="RU25605ST-8">8</A>
Salfeld JC.
Angew. Chem.
1957,
69:
723
<A NAME="RU25605ST-9A">9a</A>
Horner L.
Dürckheimer W.
Z. Naturforsch., B: Chem. Sci.
1959,
14:
744
<A NAME="RU25605ST-9B">9b</A>
Horner L.
Dürckheimer W.
Z. Naturforsch., B: Chem. Sci.
1959,
14:
743
<A NAME="RU25605ST-9C">9c</A>
Horner L.
Dürckheimer W.
Weber K.-H.
Dölling K.
Chem. Ber.
1964,
97:
312
<A NAME="RU25605ST-10A">10a</A>
Horner L.
Dürckheimer W.
Z. Naturforsch., B: Chem. Sci.
1959,
14:
741
<A NAME="RU25605ST-10B">10b</A>
Compound 7 was synthesized by oxidation of 4-methylcatechol by Fetizon reagent.
<A NAME="RU25605ST-10C">10c</A>
Balogh V.
Fétizon M.
Golfier M.
J. Org. Chem.
1971,
36:
1339
<A NAME="RU25605ST-11">11</A>
Dürckheimer W.
Paulus EF.
Angew. Chem.
1985,
97:
219
<A NAME="RU25605ST-12">12</A>
Bicyclo intermediate (8): mp 169 °C. 1H NMR (500 MHz, d
6-acetone): δ = 2.30 (d, 3 H, J = 0.7 Hz, Me), 2.35 (d, 3 H, J = 1.4 Hz, Me), 4.37 (d, 1 H, J = 1.1 Hz, 5-H), 5.92 (quin, 1 H, J = 1.4 Hz, 3-H), 6.08 (br s, 1 H, OH), 6.62 (d, 1 H, J = 0.5 Hz, 8-H), 7.43 (br s, 1 H, OH), 7.93 (1 H, br s, OH). 13C NMR (100 MHz, d
6-acetone): δ = 17.53 (Me), 23.90 (Me), 57.42 (C-5), 92.31 (C-8), 117.51 (C-7), 123.00
(C-4), 124.90 (C-11), 128.65 (C-13), 128.97 (C-6), 145.23 (C-9), 166.67 (C-10), 191.20
(C-2), 197.67 (C-12). HRMS (EI, 70 eV): m/z calcd for C14H12O5: 260.0685; found: 260.0693.
<A NAME="RU25605ST-13">13</A>
We consider that this condensation reaction is not a Diels-Alder-type coupling but
ionic coupling of o-quinone with phenol. The details will be reported in the future.