Synlett 2003(2): 0227-0229
DOI: 10.1055/s-2003-36794
LETTER
© Georg Thieme Verlag Stuttgart · New York

N-Alkoxy-4-methyl-5-(p-anisyl)thiazole-2(3H)thiones - New Precursors for Visible Light- or Thermally-Induced Alkoxyl Radical Reactions in Synthesis

Jens Hartung*, Thomas Gottwald, Kristina Špehar
Institut für Organische Chemie, Universität Würzburg, Am Hubland, 97074 Würzburg, Germany
Fax: +49(931)8884606; e-Mail: hartung@chemie.uni-wuerzburg.de;
Further Information

Publication History

Received 24 October 2002
Publication Date:
22 January 2003 (online)

Abstract

Visible light-initiated or thermally induced N-O homolysis of hitherto unknown 4-methyl-5-(p-anisyl)-substituted N-alkoxythiazolethiones furnishes alkoxyl radicals, which have been applied in the diastereoselective synthesis of bicyclic tetrahydro­furan rac-5 (5-exo-trig cyclization), formation of erythrose derivative 8 (β-C,C cleavage), and the preparation of bromoalcohol 10 (via selective 1,5-H-translocation), optionally under tin-free conditions.

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Hartung, J.; Gottwald, T.; pehar, K. unpublished results.

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Satisfactory analytical data were obtained for all new compounds in this study: N-hydroxy-4-methyl-5-(p-anisyl)thiazole-2(3H)thione, thiazolethiones 1, 3a-d, rac-4, 7, 9, and products 6, 8 and 10 from alkoxyl radical reactions.

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N-Ethoxy-4-methyl-5-(p-methoxyphenyl)thiazole-2(3H)thione(3a): A suspension of N-hydroxy-4-methyl-5-(p-anisyl)thiazole-2(3H)thione (279 mg, 1.10 mmol) in CH3OH (2 mL) was treated with a solution of tetraethyl-ammonium hydroxide in CH3OH (0.73 mL, 1.5 M, 1.10 mmol). The solvent was evaporated and the remaining salt was freeze-dried. The residue was taken up in dry DMF (2 mL) and treated with ethyl iodide (2a, 156 mg, 0.07 mL, 1.00 mmol). The reaction mixture was stirred for 12 h at 20 °C. Afterwards, H2O (7 mL) and Et2O (5 mL) were added and the phases were separated. The aq phase was extracted with Et2O (2 × 5 mL). The combined organic phases were dried (MgSO4) and concentrated in vacuo to provide an oil which was crystallized from CH3OH to furnish 180 mg (0.64 mmol, 64%) of thione 3a: pale yellow solid, mp 133 °C, Rf = 0.34 [petroleum ether/Et2O = 2:1, (v/v)]. 1H NMR (400 MHz, CDCl3): δ = 1.46 (t, 3 H, 3 J = 7.1 Hz), 2.33 (s, 3 H), 3.84 (s, 3 H), 4.53 (q, 2 H, 3 J = 7.1 Hz), 6.94 (mc, 2 H), 7.24 (mc, 2 H). 13C NMR (100 MHz, CDCl3): δ = 12.1, 13.2, 55.4, 72.2, 114.6, 119.3, 122.6, 129.9, 132.2, 159.9, 178.8. UV/Vis (EtOH): λmax (lg ε) = 334 nm (4.46), 253 (3.85), 226 (4.20); MS (EI, 70 eV): m/z (%) = 281.1 (68) [M+], 237.0 (100) [C11H11NOS2 +], 178.1 (31) [C10H10OS+], 146.1 (36) [C10H10O+], 77.0 (18) [C6H5 +], 39.9 (12) [C3H4 +]. C13H15NO2S2 (281.39): calcd C, 55.49; H, 5.37; N, 4.98; S, 22.79. Found: C, 55.29; H, 5.52; N, 4.92; S, 22.32.

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Synthesis of 1,6-cis-8-bromomethyl-7-oxabicyclo[4.3.0]nonane rac-(5): [19] (i)Preparative scale. A degassed solution of rac-N-(cis-2-allylcyclohexyloxy)-4-methyl-5-(p-methoxyphenyl)thiazole-2(3H)thione rac-(4) (188 mg, 0.50 mmol) and BrCCl3 (934 mg, 4.71 mmol, 0.46 mL) in dry benzene (3 mL) was irradiated for 30 min in a Rayonet® photoreactor equipped with 350 nm-light bulbs. The solvent was partially removed and the residue was purified by column chromatography [SiO2, solvent: petroleum ether/Et2O = 5:1 (v/v)] to provide 76.7 mg of bromomethyl-substituted tetrahydrofuran rac-5 as colorless oil (0.35 mmol, 70%, 6,8-cis:6,8-trans = 72:28); Rf = 0.77 [SiO2, solvent: petroleum ether/Et2O = 5:1 (v/v)].(ii) NMR-Experiment: A degassed solution of thiazolethione rac-(4) (18.8 mg, 0.05 mmol) and BrCCl3 (93.4 mg, 0.47 mmol, 0.05 mL) in dry C6D6 (0.28 mL) was irradiated for 15 min with visible light (Osram® Power Star HQI/D, 250 W). After completion of the photoreaction (TLC-control), the yield of rac-5 (8.98 mg, 41.0 µmol, 82%, 6,8-cis: 6,8-trans = 72:28) was determined by integrating its NMR resonances versus added anisole as internal standard in C6D6 (0.5 mL).

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4-Methyl-5-(p-anisyl)-2-(trichloromethylsulfanyl) thiazole(6): Rf = 0.77 [SiO2, petroleum ether/acetone = 4:1, (v/v)]. 1H NMR (250 MHz, CDCl3): δ = 2.59 (s, 3 H), 3.86 (s, 3 H), 6.99 (d, 2 H, J = 7.5 Hz), 7.41 (d, 2 H, J = 7.5 Hz). 13C NMR (63 MHz, CDCl3): δ = 16.3, 55.4, 114.4, 123.0, 130.6, 141.6, 150.3, 160.1, 182.5. UV/Vis (CH3CN): λmax
(lg ε) = 324 nm (4.33). MS (EI, 70 eV): m/z (%) = 354.8 (15) [M+], 236.0 (100) [C11H10NOS2 +], 177.0 (42) [C10H9NOS2 +]. C12H10Cl3NOS2 (354.70): calcd C, 40.64; H, 2.84; N, 3.95; S, 18.08. Found: C, 40.47; H, 2.77; N, 3.75; S, 17.52. HR-MS: calcd 352.9269, found 352.9269.