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HETEROCYCLES, Vol. 83, No. 7, 2011
3J(H3,H4) = 1.9 Hz), 7.15 (ddd, 1H, py H-5, 3J(H4,H5) = 7.3 Hz, 3J(H5,H6) = 4.9 Hz, 4J(H3,H5) = 1.1 Hz),
3
13
5.64 (d, 1H, H-4, J(H4,H3) = 1.9 Hz), 3.93 (s, 3H, OMe); C-NMR (CDCl3): δ (ppm) 156.2 (C5,
2J(C5,H4) = 5.7 Hz, 3J(C5,H3) = 5.9 Hz, 3J(C5,OMe) = 4.9 Hz), 151.2 (py C-2), 148.3 (py C-6, 1J = 180.5
Hz, 2J(C6,H5) = 3.6 Hz, 3J(C6,H4) = 7.4 Hz), 140.5 (C-3, 1J = 186.5 Hz, 2J(C3,H4) = 4.1 Hz), 138.0 (py
C-4, 1J = 163.8 Hz, 2J(C4,H5) = 1.2 Hz, 3J(C4,H6) = 6.8 Hz), 121.4 (py C-5, 1J = 165.1 Hz, 2J(C5,H4) = 0.9
Hz, 3J(C5,H6) = 8.0 Hz, 3J(C5,H3) = 6.4 Hz), 116.2 (py C-3, 1J = 169.5 Hz, 2J(C3,H4) = 1.3 Hz, 3J(C3,H5)
= 6.8 Hz, 4J(C3,H6) = 1.3 Hz), 86.3 (C-4, 1J = 178.2 Hz, 2J(C4,H3) = 10.7 Hz), 59.1 (OMe, 1J = 146.3 Hz);
15N-NMR (CDCl3): δ (ppm) −93.1 (py N), −100.2 (N-2), −181.2 (N-1); MS (m/z, %): 175 (M+, 25), 146
(25), 79 (26), 78 (100), 63 (69); HRMS: Calcd for C9H9N3O: 175.0746. Found: 175.0744.
2-(5-Methoxy-3-methyl-1H-pyrazol-1-yl)pyridine (6b)42
Similarly as described for the preparation of 6a, from 1b (175 mg, 1 mmol) and trimethylsilyldiazomethane
1
(2.0 M in hexane, 1.63 mL, 3.25 mmol) 81 mg (43%) of 6b were obtained as a yellowish oil. H-NMR
(CDCl3): δ (ppm) 8.45 (ddd, 1H, py H-6, 3J(H5,H6) = 4.9 Hz, 4J(H4,H6) = 1.9 Hz, 5J(H3,H6) = 0.9 Hz),
7.66 (m, 1H, py H-4, 3J(H3,H4 = 8.3 Hz, 3J(H4,H5) = 7.3 Hz, 4J(H4,H6) = 1.9 Hz), 7.60 (ddd, 1H, py H-3,
3J(H3,H4) = 8.3 Hz, 4J(H3,H5) = 1.1 Hz, 5J(H3,H6) = 0.9 Hz), 7.06 (ddd, 1H, py H-5, 3J(H4,H5) = 7.3 Hz,
4
3J(H5,H6) = 4.9 Hz, J(H3,H5) = 1.1 Hz), 5.45 (s, 1H, H-4), 3.86 (s, 3H, OMe), 2.22 (s, 3H, 3-Me);
13C-NMR (CDCl3): δ (ppm) 156.3 (C5, 2J(C5,H4) = 5.7 Hz, 3J(C5,OMe) = 4.9 Hz), 150.9 (py C-2), 149.7
2
2
1
2
(C-3, J(C3,3-Me) = 6.7 Hz, J(C3,H4) = 3.6 Hz), 148.3 (py C-6, J = 180.2 Hz, J(C6,H5) = 3.6 Hz,
3J(C6,H4) = 7.4 Hz), 137.8 (py C-4, 1J = 163.5 Hz, 2J(C4,H5) = 1.2 Hz, 3J(C4,H6) = 6.7 Hz), 120.7 (py C-5,
1J = 165.1 Hz, 2J(C5,H4) = 1.0 Hz, 3J(C5,H6) = 8.1 Hz, 3J(C5,H3) = 6.3 Hz), 115.5 (py C-3, 1J = 169.2 Hz,
2J(C3,H4) = 1.3 Hz, 3J(C3,H5) = 6.8 Hz, 4J(C3,H6) = 1.4 Hz), 86.4 (C-4, 1J = 176.3 Hz, 3J(C4,3-Me) = 3.4
Hz), 58.9 (OMe, 1J = 146.2 Hz), 14.4 (3-Me, 1J = 127.5 Hz, 3J(3-Me,H4) = 0.7 Hz); 15N-NMR (CDCl3): δ
(ppm) −94.4 (py N), −105.7 (N-2), −185.7 (N-1); MS (m/z, %): 189 (M+, 59), 188 (26), 160 (31), 119 (42),
118 (30), 117 (59), 111 (27), 93 (28), 83 (21), 79 (33), 78 (100), 67 (21), 52 (36), 51 (81).
1,5-Dimethyl-2-(2-pyridinyl)-1,2-dihydro-3H-pyrazol-3-one (7b)20
1H-NMR (DMSO-d6): δ (ppm) 8.45 (m, 1H, py H-6), 7.89 (m, 1H, py H-3), 7.78 (m, 1H, py H-4), 7.11 (m,
13
1H, py H-5), 5.33 (s, 1H, H-4), 3.29 (s, 3H, NMe), 2.23 (s, 3H, 5-Me); C-NMR (DMSO-d6): δ (ppm)
166.3 (C-3), 158.4 (C-5), 148.7 (py C-2), 148.0 (py C-6), 138.0 (py C-4), 129.2 (py C-5), 117.6 (py C-3),
97.9 (C-4), 36.3 (NMe), 12.9 (5-Me).
Ethyl 5-methoxy-1-(2-pyridinyl)-1H-pyrazole-4-carboxylate (8)
Similarly as described for the preparation of 6a, from 4 (233 mg, 1 mmol) and trimethylsilyldiazomethane
1
(2.0 M in hexane, 1.63 mL, 3.25 mmol) 88 mg (36%) of 8 were obtained as a yellowish oil. H-NMR