3.2. Synthesis of Organic Compounds
1,2-dibromoethane (8.63 mL, 100 mmol) was dissolved in dry DMF (20 mL), and tetrabutylammonium bromide (TBAB, 0.342 g, 1 mmol) and potassium carbonate (7.005 g, 50 mmol) were added. Phthalimide (3.678 g, 25 mmol) was slowly added to the suspension, and the reaction was vigorously stirred and heated to 40 °C for 1 day. Water (150 mL) was added to the reaction, and the aqueous phase was extracted with ethyl acetate (4 × 15 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, evaporated, and dried under vacuum. The compound was obtained as a white solid in 92% yield (5.844 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 7.84–7.79 (m, 2H, CHphtalimide), 7.71–7.65 (m, 2H, CHphtalimide), 4.05 (t, 3JHH = 6.7 Hz, 2H, CH2 ethyl), 3.55 (t, 3JHH = 6.7 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 134.22 (2C, CHphtalimide), 131.83 (2C, O=Cq phtalimide), 123.53 (2C, CHphtalimide), 99.98 (2C, Cq phtalimide), 39.30 (1C, CH2 ethyl), 28.14 (1C, CH2 ethyl).
Synthesized similarly to 1, starting from 1,3-dibromopropane (16 mL, 160 mmol) reacted with phthalimide (5.884 g, 40 mmol) in presence of TBAB (0.205 g, 0.6 mmol) and potassium carbonate (11.072 g, 80 mmol). The crude product was purified by silica column chromatography (CHCl3, Rf = 0.3) to give the compound as a white solid in 77% yield (8.257 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 7.91–7.84 (m, 2H, CHphtalimide), 7.78–7.71 (m, 2H, CHphtalimide), 3.86 (t, 3JHH = 6.8 Hz, 2H, CH2 propyl), 3.44 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 2.28 (quint, 3JHH = 6.8 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 168.24 (2C, O=Cq phtalimide), 134.06 (2C, CHphtalimide), 132.00 (2C, Cq phtalimide), 123.33 (2C, CHphtalimide), 36.73 (1C, CH2 propyl), 31.64 (1C, CH2 propyl), 29.79 (1C, CH2–CH2–CH2 propyl).
To a solution of 1,2,4-triazole (1.381 g, 20 mmol) in dry acetonitrile (80 mL) was added sodium tert-butoxide (1.920 g, 20 mmol), and the mixture was stirred for 1 h. Then 1 (5.082 g, 20 mmol) was added to the milky white suspension, and the stirred mixture was heated to reflux over 2 days, during which time it became yellow with white solids. The solids were filtered out and the solution was evaporated to dryness. The residue was taken in H2O (100 mL) and extracted with CHCl3 (3 × 150 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, evaporated, and dried under vacuum. The product was purified by precipitation with ethanol (20 mL), filtered, and dried under vacuum. The compound was obtained as a white solid in 55% yield (2.641 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.51 (s, 1H, CHtriazole), 7.93 (s, 1H, CHtriazole), 7.79–7.74 (m, 2H, CHphtalimide), 7.69–7.65 (m, 2H, CHphtalimide), 4.53 (t, 3JHH = 5.9 Hz, 2H, CH2 ethyl), 4.12 (t, 3JHH = 5.9 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 167.69 (2C, O=Cq phtalimide), 149.68 (1C, CHtriazole), 142.90 (1C, CHtriazole), 134.37 (2C, CHphtalimide), 131.61 (2C, Cq phtalimide), 123.64 (2C, CHphtalimide), 48.08 (1C, CH2 ethyl), 37.52 (1C, CH2 ethyl).
Synthetized similarly to 3, starting from 1,2,4-triazole (2.076 g, 30 mmol) reacted with sodium tert-butoxide (2.652 g, 30 mmol) and 2 (8.257 g, 31 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 98:2, Rf = 0.3) to give the compound as a yellow solid in 40% yield (3.075 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.17 (s, 1H, CHtriazole), 7.85 (s, 1H, CHtriazole), 7.80–7.77 (m, 2H, CHphtalimide), 7.69–7.66 (m, 2H, CHphtalimide), 4.16 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 3.66 (t, 3JHH = 6.2 Hz, 2H, CH2 propyl), 2.24 (quint, 3JHH = 6.7 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 168.37 (2C, O=Cq phtalimide), 152.18 (1C, CHtriazole), 143.60 (1C, CHtriazole), 134.21 (2C, CHphthalimide), 131.87 (2C, Cq phthalimide), 123.40 (2C, CHphthalimide), 47.10 (1C, CH2 propyl), 34.89 (1C, CH2 propyl), 28.97 (1C, CH2–CH2–CH2 propyl).
To a solution of 3 (1.451 g, 6 mmol) in absolute ethanol (100 mL) and CHCl3 (20 mL) was added hydrazine monohydrate (2.91 mL, 60 mmol), and the colorless solution was stirred at room temperature for 17 h. After that the solution was heated to 50 °C for 1 day, during which time white solids were formed. To the hot mixture was added CHCl3 (30 mL) and the mixture was cooled. The mixture was filtered, and the solids washed with CHCl3. The combined solution was evaporated, then co-evaporated with EtOH (2 × 10 mL) to remove the excess hydrazine, and the residue was dried under vacuum. The compound was obtained as a yellow oil in 93% yield (623 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.20 (s, 1H, CHtriazole), 7.87 (s, 1H, CHtriazole), 4.20 (t, 3JHH = 5.7 Hz, 2H, CH2 ethyl), 3.09 (t, 3JHH = 5.7 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 152.21 (1C, CHtriazole), 143.56 (1C, CHtriazole), 52.71 (1C, CH2 ethyl), 41.43 (1C, CH2 ethyl).
Synthetized similarly to 5, starting from 4 (2.800 g, 11 mmol) reacted with monohydrated hydrazine (5.3 mL, 110 mmol). The compound was obtained as a yellow oil in 91% yield (1.255 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.03 (s, 1H, CHtriazole), 7.87 (s, 1H, CHtriazole), 4.23 (t, 3JHH = 6.8 Hz, 2H, CH2 propyl), 2.64 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 1.93 (quint, 3JHH = 6.7 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 151.85 (1C, CHtriazole), 143.05 (1C, CHtriazole), 46.90 (1C, CH2 propyl), 38.52 (1C, CH2 propyl), 32.96 (1C, CH2–CH2–CH2 propyl).
To a solution of 7 (597 μL, 5 mmol) in dry toluene (50 mL) was added 2,4-dichlorobenzaldehyde (875 mg, 5 mmol). Some 4 Å molecular sieves and 5 drops of AcOH were added to the colorless solution, and the stirred mixture was heated to reflux over 1 day, during which time it turned yellow. The solids were filtered out, and the solution was evaporated and dried under vacuum. The compound was obtained as a yellow oil in 99% yield (1.408 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.53 (s, 1H, CHimine), 7.87 (d, 3JHH = 8.5 Hz, 1H, CHbenzene), 7.42 (s, 1H, CHimidazole), 7.29 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.18 (dd, 3JHH = 8.5, 1.7 Hz, 1H, CHbenzene), 6.98 (s, 1H, CHimidazole), 6.86 (s, 1H, CHimidazole), 3.99 (t, 3JHH = 6.9 Hz, 2H, CH2 propyl), 3.51 (t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 2.08 (quint, 3JHH = 6.7 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 157.52 (1C, CHimine), 137.14 (1C, CHimidazole), 137.05 (1C, Cq benzene), 135.55 (1C, Cq benzene), 131.46 (1C, Cq benzene), 129.53 (1C, CHbenzene), 129.43 (1C, CHimidazole), 129.13 (1C, CHbenzene), 127.50 (1C, CHbenzene), 118.82 (1C, CHimidazole), 57.67 (1C, CH2 propyl), 44.54 (1C, CH2 propyl), 31.89 (1C, CH2–CH2–CH2 propyl).
Synthetized similarly to 8, starting from 7 (597 μL, 5 mmol) reacted with 2,4-difluorobenzaldehyde (547 µL, 5 mmol). The compound was obtained as an orange oil in 94% yield (1.177 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.42 (s, 1H, CHimine), 7.90 (td, 4JHF = 8.5, 3JHH = 6.7 Hz, 1H, CHbenzene), 7.44 (s, 1H, CHimidazole), 7.00 (s, 1H, CHimidazole), 6.91–6.82 (m, 2H), 6.76 (ddd, 3JHF = 10.9, 3JHH = 8.8, 4JHH = 2.4 Hz, 1H, CHbenzene), 4.02 (t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 3.51 (t, 3JHH = 6.9 Hz, 2H, CH2 propyl), 2.10 (quint, 3JHH = 6.7 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 164.76 (dd, 1JCF = 218.5 Hz, 3JCF = 12.3 Hz, 1C, Cq benzene), 162.23 (dd, 1JCF = 220.0 Hz, 3JCF = 12.2 Hz, 1C, Cq benzene), 154.23 (1C, CHimine), 137.17 (1C, CHimidazole), 129.43 (1C, CHimidazole), 129.03 (dd, 3JCF = 9.8 Hz, 3JCF = 4.1 Hz, 1C, CHbenzene), 120.08 (dd, 2JCF = 9.3 Hz, 4JCF = 3.2 Hz, 1C, Cq benzene), 118.82 (1C, CHimidazole), 112.10 (dd, 2JCF = 21.6 Hz, 4JCF = 2.9 Hz, 1C, CHbenzene), 104.03 (t, 1JCF = 25.3 Hz, 1C, CHbenzene), 57.82 (1C, CH2 propyl), 44.63 (1C, CH2 propyl), 31.99 (1C, CH2–CH2–CH2 propyl). 19F NMR (CDCl3, 376 MHz, ppm): δF = −105.41 (m, 1F), −117.76 (m, 1F).
The oil of 8 (1.408 g, 4.99 mmol) was dissolved in dry MeOH (50 mL) and sodium borohydride (NaBH4, 379 mg, 10 mmol) was added slowly. The yellow solution was stirred at room temperature for 6 h and then heated to reflux for 20 h, during which time it became colorless. The solution was filtered and evaporated to dryness. The residue was taken in CHCl3 (30 mL) and H2O (20 mL) with the pH of the aqueous phase adjusted to 9 by addition of KOH. The mixture was extracted, and the separated aqueous phase was further extracted with CHCl3 (2 × 30 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, evaporated, and dried under vacuum. The compound was obtained as a yellow oil in 99% yield (1.403 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 7.39 (s, 1H, CHimidazole), 7.30 (d, 4JHH = 1.9 Hz, 1H, CHbenzene), 7.21 (d, 3JHH = 8.1 Hz, 1H, CHbenzene), 7.14 (dd, 3JHH = 8.2, 4JHH = 1.9 Hz, 1H, CHbenzene), 6.97 (s, 1H, CHimidazole), 6.82 (s, 1H, CHimidazole), 3.98 (t, 3JHH = 6.9 Hz, 2H, CH2 propyl), 3.73 (s, 2H, NH–CH2), 2.51 (t, 3JHH = 6.6 Hz, 2H, CH2 propyl), 1.86 (quint, 3JHH = 6.7 Hz, 2H, CH2–CH2–CH2 propyl).
13C NMR (CDCl3, 100 MHz, ppm): δC = 137.18 (1C, CHimidazole), 136.04 (1C, Cq benzene), 134.31 (1C, Cq benzene), 133.42 (1C, Cq benzene), 130.87 (1C, CHbenzene), 129.40 (1C, CHbenzene), 129.35 (1C, CHimidazole), 127.10 (1C, CHbenzene), 118.82 (1C, CHimidazole), 50.66 (1C, N–CH2), 45.44 (1C, CH2 propyl), 44.53 (1C, CH2 propyl), 31.22 (1C, CH2–CH2–CH2 propyl).
Synthetized similarly to 10, starting from 9 (1.177 g, 5 mmol) reacted with NaBH4 (380 mg, 10 mmol). The compound was obtained as a yellow oil in 98% yield (1.157 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 7.38 (s, 1H, CHimidazole), 7.19 (td, 4JHF = 8.4, 3JHH = 6.6 Hz, 1H, CHbenzene), 6.97 (s, 1H, CHimidazole), 6.82 (s, 1H, CHimidazole), 6.80–6.68 (m, 2H), 3.97 (t, 3JHH = 6.9 Hz, 2H, CH2 propyl), 3.69 (s, 2H, NH–CH2), 2.51 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 1.85 (p, 3JHH = 6.8 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 161.17 (dd, 1JCF = 247.8, 3JCF = 12.0 Hz, 1C, Cq benzene), 160.14 (dd, 1JCF = 248.2, 3JCF = 12.1 Hz, 1C, Cq benzene), 136.19 (1C, CHimidazole), 130.05 (dd, 3JCF = 8.9, 3JCF = 6.8 Hz, 1C, CHbenzene), 128.40 (1C, CHimidazole), 121.93 (dd, 2JCF = 15.4, 4JCF = 3.1 Hz, 1C, Cq benzene), 117.81 (1C, CHimidazole), 110.10 (dd, 2JCF = 20.9, 4JCF = 3.1 Hz, 1C, CHbenzene), 102.78 (t, 2JCF = 25.6 Hz, 1C, CHbenzene), 45.74 (1C, NH–CH2), 44.40 (1C, CH2 propyl), 43.52 (1C, CH2 propyl), 30.19 (1C, CH2–CH2–CH2 propyl). 19F NMR (CDCl3, 376 MHz, ppm): δF = −111.73 (m, 1F), −115.27 (m, 1F).
Compound 10 (284 mg, 1 mmol) was dissolved in dry MeOH (10 mL) and 2-pyridinecarboxaldehyde (95 μL, 1 mmol) was added. The yellow solution was stirred at room temperature for 1 h, then heated to reflux for 20 h. The reaction was let to cool and 5 drops of AcOH, sodium cyanoborohydride (NaBH3CN, 126 mg, 2 mmol) and more dry MeOH (5 mL) were added. The reaction was stirred at room temperature for another 21 h, and then evaporated to dryness. The residue was taken in CHCl3 (30 mL) and H2O (20 mL), with the pH of the aqueous phase adjusted to 10 by addition of KOH. The mixture was extracted, and the separated aqueous phase was further extracted with CHCl3 (2 × 30 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, and evaporated to dryness. The crude product was purified by silica column chromatography (CHCl3/MeOH, 95:5, Rf = 0.3). The compound was obtained as a brown oil in 41% yield (154 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.45 (d, 3JHH = 5.5 Hz, 1H, CHpyridine), 7.57 (td, 3JHH = 7.7, 4JHH = 1.8 Hz, 1H, CHpyridine), 7.36 (d, 3JHH = 8.3 Hz, 1H, CHbenzene), 7.31–7.24 (m, 3H), 7.14 (dd, 3JHH = 8.3, 4JHH =2.1 Hz, 1H, CHbenzene), 7.10 (td, 3JHH = 4.9, 4JHH = 2.4 Hz, 1H, CHpyridine), 6.91 (s, 1H, CHimidazole), 6.67 (s, 1H, CHimidazole), 3.84 (t, 3JHH = 7.1 Hz, 2H, CH2 propyl), 3.67 (s, 2H, N–CH2), 3.64 (s, 2H, N–CH2), 2.48 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 1.88 (quint, 3JHH = 6.8 Hz, 3H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 159.00 (1C, Cq pyridine), 149.09 (1C, CHpyridine), 136.87 (1C, CHimidazole), 136.45 (1C, CHpyridine), 135.13 (1C, Cq benzene), 134.82 (1C, Cq benzene), 133.40 (1C, Cq benzene), 131.69 (1C, CHbenzene), 129.36 (1C, CHbenzene), 128.99 (1C, CHimidazole), 127.03 (1C, CHbenzene), 123.06 (1C, CHpyridine), 122.22 (1C, CHpyridine), 118.69 (1C, CHimidazole), 60.41 (1C, N–CH2), 55.60 (1C, N–CH2), 51.09 (1C, CH2 propyl), 44.84 (1C, CH2 propyl), 28.75 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C19H21Cl2N4 [12a+H]+ 375.1138, found 375.1138.
Synthetized similarly to 12a, starting from 10 (142 mg, 0.5 mmol) reacted with 2-quinolinecarboxaldehyde (79 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 96:4, Rf = 0.3). The compound was obtained as a bright yellow oil in 27% yield (57 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.05 (d, 3JHH = 8.5 Hz, 1H, CHquinoline), 7.97 (d, 3JHH = 8.5 Hz, 1H, CHquinoline), 7.73 (d, 3JHH = 8.1 Hz, 1H, CHquinoline), 7.64 (td, 3JHH = 7.0, 4JHH = 1.3 Hz, 1H, CHquinoline), 7.51–7.40 (m, 3H), 7.36 (d, 3JHH = 8.3 Hz, 1H, CHbenzene), 7.30 (d, 4JHH = 2.1 Hz, 1H, CHbenzene), 7.14 (dd, 3JHH = 8.2, 4JHH = 2.1 Hz, 1H, CHbenzene), 6.88 (s, 1H, CHimidazole), 6.64 (s, 1H, CHimidazole), 3.86 (t, 3JHH = 7.1 Hz, 2H, CH2 propyl), 3.85 (s, 2H, N–CH2), 3.70 (s, 2H, N–CH2), 2.54 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 1.92 (quint, 3JHH = 7.1 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 159.62 (1C, Cq quinoline), 147.46 (1C, Cq quinoline), 136.63 (1C, CHimidazole), 136.54 (1C, CHquinoline), 135.00 (1C, Cq benzene), 134.98 (1C, Cq benzene), 133.61 (1C, Cq benzene), 131.96 (1C, CHbenzene), 129.66 (1C, CHquinoline), 129.47 (1C, CHbenzene), 128.93 (1C, CHquinoline), 128.02 (1C, CHimidazole), 127.60 (1C, CHquinoline), 127.31 (1C, Cq quinoline), 127.07 (1C, CHbenzene), 126.42 (1C, CHquinoline), 120.95 (1C, CHquinoline), 118.86 (1C, CHimidazole), 61.17 (1C, N–CH2), 55.89 (1C, N–CH2), 51.30 (1C, CH2 propyl), 45.23 (1C, CH2 propyl), 28.66 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C23H23Cl2N4 [12b+H]+ 425.1294, found 425.1287.
Synthetized similarly to 12a, starting from 10 (142 mg, 0.5 mmol) reacted with 8-hydroxy-2-quinolinecarboxaldehyde (113 mg, 0.65 mmol) and NaBH3CN (63 mg, 1 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 98:2, Rf = 0.2). The compound was obtained as a pink oil in 15% yield (33 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.03 (d, 3JHH = 8.5 Hz, 1H, CHquinoline), 7.43 (d, 3JHH = 8.5 Hz, 1H, CHquinoline), 7.39–7.30 (m, 3H), 7.26 (s, 1H, CHimidazole), 7.24 (dd, 3JHH = 8.3 Hz, 4JHH = 1.0 Hz, 2H, CHbenzene), 7.15 (dd, 3JHH = 8.2, 4JHH = 2.1 Hz, 1H, CHbenzene), 7.10 (dd, 3JHH = 7.6, 4JHH = 1.0 Hz, 1H, CHquinoline), 6.89 (s, 1H, CHimidazole), 6.65 (s, 1H, CHimidazole), 3.84 (s, 2H, N–CH2), 3.83 (t, 3JHH = 7.2 Hz, 2H, CH2 propyl), 3.70 (s, 2H, N–CH2), 2.52 (t, 3JHH = 6.8 Hz, 2H, CH2 propyl), 1.90 (quint, 3JHH = 6.8 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 157.49 (1C, Cq quinoline), 151.91 (1C, Cq quinoline), 137.31 (1C, Cq quinoline), 136.91 (1C, CHimidazole), 136.57 (1C, CHquinoline), 134.98 (1C, Cq benzene), 134.94(1C, Cq benzene), 133.61 (1C, Cq benzene), 131.72 (1C, CHquinoline), 129.49 (1C, CHbenzene), 129.40 (1C, CHimidazole), 127.48 (1C, CHquinoline), 127.45 (1C, Cq quinoline), 127.07 (1C, CHbenzene), 121.72 (1C, CHquinoline), 118.61 (1C, CHimidazole), 117.70 (1C, CHbenzene), 110.23 (1C, CHquinoline), 60.71 (1C, N–CH2), 55.78 (1C, N–CH2), 51.38 (1C, CH2 propyl), 44.82 (1C, CH2 propyl), 28.84 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C23H23Cl2N4O [12c+H]+ 441.1243, found 441.1241.
Synthetized similarly to 12a, starting from 10 (142 mg, 0.5 mmol) reacted with ortho-vanillin (76 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 96:4, Rf = 0.3). The compound was obtained as a pink oil in 55% yield (115 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 9.92 (br s, 1H, OH), 7.32 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.22–7.18 (m, 2H), 7.14 (dd, 3JHH = 8.2, 4JHH = 2.0 Hz, 1H, CHbenzene), 6.90 (s, 1H, CHimidazole), 6.74 (dd, 3JHH = 8.1, 4JHH = 1.1 Hz, 1H, CHphenol), 6.71–6.65 (m, 2H), 6.53 (d, 3JHH = 7.4 Hz, 1H, CHphenol), 3.82–3.79 (m, 5H), 3.64 (s, 2H, N–CH2), 3.63 (s, 2H, N–CH2) 2.44 (t, 3JHH = 7.1 Hz, 2H, CH2 propyl), 1.96 (quint, 3JHH = 7.0 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 147.88 (1C, Cq phenol), 146.10 (1C, Cq phenol), 136.95 (1C, CHimidazole), 135.34 (1C, Cq benzene), 134.53 (1C, Cq benzene), 133.03 (1C, Cq benzene), 132.61 (1C, CHphenol), 129.86 (1C, CHbenzene), 129.53 (1C, CHimidazole), 127.46 (1C, CHbenzene), 121.82 (1C, Cq phenol), 120.88 (1C, CHphenol), 119.38 (1C, CHbenzene), 118.53 (1C, CHimidazole), 111.13 (1C, CHphenol), 57.13 (1C, N–CH2), 55.84 (1C, O–CH3), 55.64 (1C, N–CH2), 50.67 (1C, CH2 propyl), 44.74 (1C, CH2 propyl), 28.10 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C21H24Cl2N3O2 [12d+H]+ 420.1240, found 420.1239.
Synthetized similarly to 12a, starting from 10 (142 mg, 0.5 mmol) reacted with 5-bromosalicylaldehyde (101 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 97:3, Rf = 0.3). The compound was obtained as a brown oil in 40% yield (93 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 10.18 (br s, 1H, OH), 7.36 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.27 (s, 1H, CHimidazole), 7.22–7.10 (m, 5H), 7.02 (d, 4JHH = 2.4 Hz, 1H, CHphenol), 6.94 (s, 1H, CHimidazole), 6.69 (s, 1H, CHimidazole), 6.62 (d, 3JHH = 8.6 Hz, 1H, CHphenol), 3.82 (t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 3.62 (s, 2H, N–CH2), 3.61 (s, 2H, N–CH2), 2.45 (t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 1.97 (quint, 3JHH = 7.1 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 156.25 (1C, Cq phenol), 136.90 (1C, CHimidazole), 135.37 (1C, Cq benzene), 134.87 (1C, Cq benzene), 132.72 (1C, CHphenol), 132.59 (1C, Cq benzene), 131.91 (1C, CHphenol), 131.38 (1C, CHbenzene), 130.02 (1C, CHbenzene), 129.62 (1C, CHimidazole), 127.56 (1C, CHbenzene), 123.53 (1C, Cq phenol), 118.53 (1C, CHimidazole), 118.05 (1C, CHphenol), 111.28 (1C, Cq phenol), 56.99 (1C, N–CH2), 55.71 (1C, N–CH2), 50.73 (1C, CH2 propyl), 44.75 (1C, CH2 propyl), 27.95 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C20H21Cl2N3OBr [12e+H]+ 470.0217, found 470.0214.
Synthetized similarly to 12a, starting from 11 (126 mg, 0.5 mmol) reacted with 5-bromosalicylaldehyde (101 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 99:1, Rf = 0.1). The compound was obtained as a clear oil in 26% yield (56 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 10.34 (br s, 1H, OH), 7.28 (s, 1H, CHimidazole), 7.20 (dd, 3JHH = 8.6, 4JHH = 2.5 Hz, 1H, CHphenol), 7.15–7.07 (m, 1H), 7.02 (d, 4JHH = 2.4 Hz, 1H, CHphenol), 6.94 (s, 1H, CHimidazole), 6.86–6.73 (m, 2H), 6.71 (s, 1H, CHimidazole), 6.64 (d, 3JHH = 8.6 Hz, 1H, CHphenol), 4.71 (s, 0H), 3.83 (t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 3.62 (s, 2H, N–CH2), 3.58 (s, 2H, N–CH2), 2.43 (t, 3JHH = 7.2 Hz, 2H, CH2 propyl), 1.97 (quint, 3JHH = 7.1 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 162.87 (dd, 1JCF = 250.3 Hz, 3JCF = 12.2 Hz, 1C, Cq benzene), 161.56 (dd, 1JCF = 249.2 Hz, 3JCF = 11.9 Hz, 1C, Cq benzene), 156.48 (1C, Cq phenol), 136.94 (1C, CHimidazole), 132.71 (dd, 3JCF = 9.3, 3JCF = 5.8 Hz, 1C, CHbenzene), 131.89 (1C, CHphenol), 131.28 (1C, CHphenol), 129.68 (1C, CHimidazole), 123.46 (1C, Cq phenol), 118.92 (dd, 2JCF = 14.6, 4JCF = 3.2 Hz, 1C, Cq benzene), 118.53 (1C, CHimidazole), 118.09 (1C, CHphenol), 111.78 (dd, 2JCF = 21.3, 4JCF = 2.9 Hz, 1C, CHbenzene), 111.24 (1C, Cq phenol), 104.36 (t, 3JCF = 25.7 Hz, 1C, CHbenzene), 57.15 (1C, N–CH2), 51.14 (1C, N–CH2), 50.26 (1C, CH2 propyl), 44.61 (1C, CH2 propyl), 28.11 (1C, CH2–CH2–CH2 propyl). 19F NMR (CDCl3, 376 MHz, ppm): δF = −109.00 (m, 1F), −113.01 (m, 1F). ESI-HRMS: m/z calculated for C20H21F2N3O [13e+H]+ 436.0831, found 436.0836.
Synthetized similarly to 8, starting from 6 (1.255 g, 9.9 mmol) reacted with 2,4-dichlorobenzaldehyde (1.733 g, 9.9 mmol). The compound was obtained as an orange oil in 96% yield (2.7 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.57 (s, 1H, CHimine), 8.02 (s, 1H, CHtriazole), 7.90–7.88 (m, 2H), 7.34 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.22 (dd, 3JHH = 8.5, 4JHH = 1.7 Hz, 1H, CHbenzene), 4.27 (t, 3JHH = 6.8 Hz, 2H, CH2 propyl), 3.56 (t, 3JHH = 5.8 Hz, 2H, CH2 propyl), 2.23 (quint, 3JHH = 6.7 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 157.75 (1C, CHimine), 152.08 (1C, CHtriazole), 143.18 (1C, CHtriazole), 137.18 (1C, Cq benzene), 135.63 (1C, Cq benzene), 131.46 (1C, Cq benzene), 129.63 (1C, CHbenzene), 129.14 (1C, CHbenzene), 127.56 (1C, CHbenzene), 57.68 (1C, CH2 propyl), 47.30 (1C, CH2 propyl), 30.65 (1C, CH2–CH2–CH2 propyl).
Synthetized similarly to 10, starting from 14 (2.7 g, 9.5 mmol) reacted with NaBH4 (720 mg, 19 mmol). The compound was obtained as an orange oil in 97% yield (2.614 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 7.98 (s, 1H, CHtriazole), 7.87 (s, 1H, CHtriazole), 7.31 (d, 4JHH = 1.9 Hz, 1H, CHbenzene), 7.22 (d, 3JHH = 8.2 Hz, 1H, CHbenzene), 7.15 (dd, 3JHH = 8.2, 4JHH = 2.0 Hz, 1H, CHbenzene), 4.24 (t, 3JHH = 6.8 Hz, 2H, CH2 propyl), 3.74 (s, 2H, NH–CH2), 2.52 (t, 3JHH = 6.5 Hz, 2H, CH2 propyl), 1.99 (quint, 3JHH J = 6.7 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 151.99 (1C, CHtriazole), 143.19 (1C, CHtriazole), 136.05 (1C, Cq benzene), 134.34 (1C, Cq benzene), 133.44 (1C, Cq benzene), 130.82 (1C, CHbenzene), 129.38 (1C, CHbenzene), 127.09 (1C, CHbenzene), 50.61 (1C, NH–CH2), 47.18 (1C, CH2 propyl), 45.30 (1C, CH2 propyl), 29.82 (1C, CH2–CH2–CH2 propyl).
Synthetized similarly to 12a, starting from 15 (143 mg, 0.5 mmol) reacted with 2-pyridinecarboxaldehyde (48 μL, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 98:2, Rf = 0.2). The compound was obtained as a yellow oil in 28% yield (53 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.45 (d, 3JHH = 4.8 Hz, 1H, CHpyridine), 7.79 (s, 1H, CHtriazole), 7.73 (s, 1H, CHtriazole), 7.56 (td, 3JHH = 7.7, 4JHH = 1.6 Hz, 1H, CHpyridine), 7.37 (d, 3JHH = 8.3 Hz, 1H, CHbenzene), 7.34–7.23 (m, 2H), 7.13 (dd, 3JHH = 8.3, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.10 (dd, 3JHH = 7.2 Hz, 4JHH = 5.6 Hz, 1H, CHpyridine), 4.07 (t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 3.67 (s, 2H, N–CH2), 3.64 (s, 2H, N–CH2), 2.48 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 2.01 (quint, 3JHH = 6.8 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 158.99 (1C, Cq pyridine), 151.84 (1C, CHtriazole), 149.10 (1C, CHpyridine), 142.85 (1C, CHtriazole), 136.41 (1C, CHpyridine), 135.12 (1C, Cq benzene), 134.82 (1C, Cq benzene), 133.38 (1C, Cq benzene), 131.68 (1C, CHbenzene), 129.35 (1C, CHbenzene), 127.00 (1C, CHbenzene), 123.08 (1C, CHpyridine), 122.20 (1C, CHpyridine), 60.31 (1C, N–CH2), 55.48 (1C, N–CH2), 50.80 (1C, CH2 propyl), 47.39 (1C, CH2 propyl), 27.32 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C18H20Cl2N5 [16a+H]+ 376.1090, found 376.1093.
Synthetized similarly to 12a, starting from 15 (143 mg, 0.5 mmol) reacted with 2-quinolinecarboxaldehyde (79 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude product was purified by silica column chromatography (CHCl3/MeOH, 99:1, Rf = 0.1). The compound was obtained as a bright yellow oil in 17% yield (37 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.03 (d, 3JHH = 8.5 Hz, 1H, CHquinoline), 7.97 (d, 3JHH = 8.5 Hz, 1H, CHquinoline), 7.79–7.69 (m, 3H), 7.63 (t, 3JHH = 7.7 Hz, 1H, CHquinoline), 7.49–7.42 (m, 2H), 7.36 (d, 3JHH = 8.3 Hz, 1H, CHbenzene), 7.29 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.12 (dd, 3JHH = 8.2, 4JHH = 2.0 Hz, 1H, CHbenzene), 4.06 (t, 3JHH = 7.1 Hz, 2H, CH2 propyl), 3.84 (s, 2H, N–CH2), 3.69 (s, 2H, N–CH2), 2.53 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 2.03 (quint, 3JHH = 6.9 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 159.69 (1C, Cq quinoline), 151.86 (1C, CHtriazole), 147.48 (1C, Cq quinoline), 142.77 (1C, CHtriazole), 136.45 (1C, CHquinoline), 135.04 (1C, Cq benzene), 134.99 (1C, Cq benzene), 133.53 (1C, Cq benzene), 131.90 (1C, CHbenzene), 129.60 (1C, CHquinoline), 129.44 (1C, CHbenzene), 128.97 (1C, CHquinoline), 127.57 (1C, CHquinoline), 127.30 (1C, Cq quinoline), 127.01 (1C, CHbenzene), 126.38 (1C, CHquinoline), 120.93 (1C, CHquinoline), 61.13 (1C, N–CH2), 55.74 (1C, N–CH2), 51.16 (1C, CH2 propyl), 47.53 (1C, CH2 propyl), 27.41 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C22H22Cl2N5 [16b+H]+ 426.1247, found 426.1248.
Synthetized similarly to 12a, starting from 15 (143 mg, 0.5 mmol) reacted with 1 (113 mg, 0.65 mmol) and NaBH3CN (63 mg, 1 mmol). The residue was treated with HCl 0.1 M (10 mL) and the insoluble matter was filtered off with a PTFE filter. The aqueous solution was then adjusted to pH 12 by addition of KOH and extracted with CHCl3 (3 × 20 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, and evaporated to dryness. The crude product was purified by silica column chromatography (CHCl3/MeOH, 99.5:0.5, Rf = 0.05). The compound was obtained as a bright yellow oil in 34% yield (75 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.12 (br s, 1H, OH), 8.00 (d, 3JHH = 8.4 Hz, 2H, CHquinoline), 7.77 (s, 1H, CHtriazole), 7.74 (s, 1H, CHtriazole), 7.41 (d, 3JHH = 8.4 Hz, 1H, CHquinoline), 7.36–7.25 (m, 3H), 7.21 (d, 3JHH = 8.1 Hz, 1H, CHbenzene), 7.14–7.02 (m, 2H), 4.05 (t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 3.81 (s, 2H, N–CH2), 3.67 (s, 2H, N–CH2), 2.51 (t, 3JHH = 6.6 Hz, 2H, CH2 propyl), 2.03 (quint, 3JHH = 6.7 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 156.40 (1C, Cq quinoline), 150.86 (1C, Cq quinoline), 150.86 (1C, CHtriazole), 141.77 (1C, CHtriazole), 136.27 (1C, Cq benzene), 135.51 (1C, CHquinoline), 133.92 (1C, Cq benzene), 133.89 (1C, Cq benzene), 132.52 (1C, Cq quinoline), 130.69 (1C, CHquinoline), 128.41 (1C, CHbenzene), 126.43 (1C, Cq quinoline), 126.42 (1C, CHquinoline), 126.00 (1C, CHbenzene), 120.73 (1C, CHquinoline), 116.66 (1C, CHbenzene), 109.20 (1C, CHquinoline), 59.48 (1C, N–CH2), 54.62 (1C, N–CH2), 50.04 (1C, CH2 propyl), 46.42 (1C, CH2 propyl), 26.37 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C22H22Cl2N5O [16c+H]+ 442.1196, found 442.1198.
Synthetized similarly to 12a, starting from 15 (143 mg, 0.5 mmol) reacted with ortho-vanillin (76 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The residue was treated with HCl 0.1 M (8 mL) and the insoluble matter was filtered off with a PTFE filter. The aqueous solution was then adjusted to pH 11 by addition of KOH and extracted with CHCl3 (3 × 20 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, and evaporated to dryness. The crude product was purified by silica column chromatography (CHCl3/MeOH, 99:1, Rf = 0.1). The compound was obtained as a clear oil in 42% yield (89 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 9.87 (br s, 1H, OH), 7.78 (s, 1H, CHtriazole), 7.71 (s, 1H, CHtriazole), 7.32 (d, 4JHH = 1.9 Hz, 1H, CHbenzene), 7.21 (d, 3JHH = 8.2 Hz, 1H, CHbenzene), 7.14 (dd, 3JHH = 8.2, 4JHH = 1.9 Hz, 1H, CHbenzene), 6.73 (d, 3JHH = 8.1 Hz, 1H, CHphenol), 6.67 (t, 3JHH = 7.8 Hz, 1H, CHphenol), 6.52 (d, 3JHH = 7.5 Hz, 1H, CHphenol), 4.05 (t, 3JHH = 6.7 Hz, 2H, CH2 propyl), 3.79 (s, 3H, O–CH3), 3.64, (s, 2H, N–CH2), 3.63 (s, 2H, N–CH2), 2.44 (t, 3JHH = 6.9 Hz, 2H, CH2 propyl), 2.10 (quint, 3JHH = 6.8 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 151.97 (1C, CHtriazole), 147.78 (1C, Cq phenol), 145.94 (1C, Cq phenol), 143.18 (1C, CHtriazole), 135.32 (1C, Cq benzene), 134.50 (1C, Cq benzene), 133.04 (1C, Cq benzene), 132.64 (1C, CHbenzene), 129.84 (1C, CHbenzene), 127.41 (1C, CHbenzene), 121.85 (1C, Cq phenol), 120.95 (1C, CHphenol), 119.40 (1C, CHphenol), 111.12 (1C, CHphenol), 56.89 (1C, N–CH2), 55.82 (1C, O–CH3), 55.54 (1C, N–CH2), 50.33 (1C, CH2 propyl), 47.20 (1C, CH2 propyl), 26.40 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C20H23Cl2N4O2 [16d+H]+ 421.1193, found 421.1196.
Synthetized similarly to 12a, starting from 15 (143 mg, 0.5 mmol) reacted with 5-bromosalicylaldehyde (101 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude compound was purified by silica column chromatography (CHCl3/MeOH, 99.5:0.5, Rf = 0.1). The combined fractions containing the target compound were evaporated, the residue was treated with HCl 0.1 M (8 mL), and the insoluble matter was filtered off on a syringe PTFE filter. The aqueous solution was then adjusted to pH 12 by addition of KOH and extracted with CHCl3 (3 × 20 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, and evaporated to dryness. The compound was obtained as a yellow oil in 22% yield (30 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 10.09 (br s, 1H, OH), 7.82 (s, 2H, CHtriazole), 7.36 (d, 4JHH = 1.8 Hz, 1H, CHbenzene), 7.21–7.12 (m, 3H), 7.01 (d, 4JHH = 2.4 Hz, 1H, CHphenol), 6.62 (d, 3JHH = 8.6 Hz, 1H, CHphenol), 4.06 (t, 3JHH = 6.8 Hz, 2H, CH2 propyl), 3.64 (s, 2H, N–CH2), 3.61 (s, 2H, N–CH2), 2.47(t, 3JHH = 7.0 Hz, 2H, CH2 propyl), 2.12 (quint, 3JHH = 6.9 Hz, 2H, CH2–CH2–CH2 propyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 155.18 (1C, Cq phenol), 151.12 (1C, CHtriazole), 142.11 (1C, CHtriazole), 134.37 (1C, Cq benzene), 133.86 (1C, Cq benzene), 131.73 (1C, CHphenol), 131.52 (1C, Cq benzene), 130.91 (1C, CHbenzene), 130.36 (1C, CHphenol), 129.00 (1C, CHbenzene), 126.51 (1C, CHbenzene), 122.39 (1C, Cq phenol), 117.01 (1C, CHphenol), 110.27 (1C, Cq phenol), 55.90 (1C, N–CH2), 54.52 (1C, N–CH2), 49.43 (1C, CH2 propyl), 46.22 (1C, CH2 propyl), 25.24 (1C, CH2–CH2–CH2 propyl). ESI-HRMS: m/z calculated for C19H20Cl2N4OBr [16e+H]+ 471.0169, found 471.0169.
Synthetized similarly to 8, starting from 5 (623 mg, 5.56 mmol) reacted with 2,4-dichlorobenzaldehyde (973 g, 5.56 mmol). The compound was obtained as a yellow solid in 94% yield (1.406 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.40 (s, 1H, CHimine), 8.00 (s, 1H, CHtriazole), 7.88 (s, 1H, CHtriazole), 7.81 (d, 3JHH = 8.5 Hz, 1H, CHbenzene), 7.31 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.19 (dd, 3JHH = 8.3, 4JHH = 1.9 Hz, 1H, CHbenzene), 4.48 (t, 3JHH = 5.6 Hz, 2H, CH2 ethyl), 4.00 (t, 3JHH = 6.0 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 159.52 (1C, CHimine), 152.19 (1C, CHtriazole), 143.74 (1C, CHtriazole), 137.51 (1C, Cq benzene), 135.82 (1C, Cq benzene), 131.08 (1C, Cq benzene), 129.66 (1C, CHbenzene), 129.00 (1C, CHbenzene), 127.58 (1C, CHbenzene), 59.70 (1C, CH2 ethyl), 50.07 (1C, CH2 ethyl).
Synthetized similarly to 10, starting from 17 (1.406 g, 5.22 mmol) reacted with NaBH4 (395 mg, 10.44 mmol). The compound was obtained as a light-yellow solid in 97% yield (1.33 g).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.06 (s, 1H, CHtriazole), 7.88 (s, 1H, CHtriazole), 7.30 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.19 (d, 3JHH = 8.2 Hz, 1H, CHbenzene), 7.14 (dd, 3JHH = 8.2, 4JHH = 2.0 Hz, 1H, CHbenzene), 4.22 (t, 3JHH = 5.7 Hz, 2H, CH2 ethyl), 3.77 (s, 2H, NH–CH2), 3.01 (t, 3JHH = 5.2 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 152.12 (1C, CHtriazole), 143.57 (1C, CHtriazole), 135.65 (1C, Cq benzene), 134.28 (1C, Cq benzene), 133.54 (1C, Cq benzene), 130.66 (1C, CHbenzene), 129.37 (1C, CHbenzene), 127.18 (1C, CHbenzene), 50.22 (1C, NH–CH2), 49.81 (1C, CH2 ethyl), 47.89 (1C, CH2 ethyl).
Synthetized similarly to 12a, starting from 18 (136 mg, 0.5 mmol) reacted with 2-pyridinecarboxaldehyde (48 μL, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude compound was purified by silica column chromatography (CHCl3/MeOH, 97:3, Rf = 0.3). The compound was obtained as a brown oil in 68% yield (165 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.45 (d, 3JHH = 4.9 Hz, 1H, CHpyridine), 7.99 (s, 1H, CHtriazole), 7.76 (s, 1H, CHtriazole), 7.53 (td, 3JHH = 7.7, 4JHH = 1.8 Hz, 1H, CHpyridine), 7.25 (s, 1H, CHbenzene), 7.12–7.05 (m, 4H), 4.15 (t, 3JHH = 6.4, 5.1 Hz, 2H, CH2 ethyl), 3.75 (s, 2H, N–CH2), 3.69 (s, 2H, N–CH2), 2.95 (t, 3JHH = 6.4 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 158.29 (1C, Cq pyridine), 151.61 (1C, CHtriazole), 148.95 (1C, CHpyridine), 143.68 (1C, CHtriazole), 136.78 (1C, CHpyridine), 134.62 (1C, Cq benzene), 134.50 (1C, Cq benzene), 133.49 (1C, Cq benzene), 131.26 (1C, CHbenzene), 129.30 (1C, CHbenzene), 127.14 (1C, CHbenzene), 122.94 (1C, CHpyridine), 122.39 (1C, CHpyridine), 60.22 (1C, CH2 ethyl), 55.52 (1C, N–CH2), 53.45 (1C, N–CH2), 47.85 (1C, CH2 ethyl). ESI-HRMS: m/z calculated for C17H18Cl2N5 [19a+H]+ 362.0934, found 362.0930.
Synthetized similarly to 12a, starting from 18 (136 mg, 0.5 mmol) reacted with 8-hydroxy-2-quinolinecarboxaldehyde (113 mg, 0.65 mmol) and NaBH3CN (63 mg, 1 mmol). The crude compound was purified by silica column chromatography (CHCl3/MeOH, 99:1, Rf = 0.1). The combined fractions containing the target compound were evaporated, the residue was treated with HCl 0.1 M (4 mL) and the insoluble matter was filtered off with a PTFE filter. The aqueous solution was then adjusted to pH 12 by addition of KOH and extracted with CHCl3 (3 × 20 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, and evaporated to dryness. The compound was obtained as a yellow oil in 28% yield (60 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.11 (br s, 1H, OH), 7.96 (d, 3JHH = 8.5 Hz, 1H, CHquinoline), 7.90 (s, 1H, CHtriazole), 7.76 (s, 1H, CHtriazole), 7.34 (t, 3JHH = 7.9 Hz, 1H, CHquinoline), 7.27 (d, 4JHH = 1.6 Hz, 1H, CHbenzene), 7.23–7.16 (m, 2H), 7.14–7.06 (m, 3H), 4.13 (t, 3JHH = 5.8 Hz, 2H, CH2 ethyl), 3.86 (s, 2H, N–CH2), 3.73 (s, 2H, N–CH2), 3.00 (t, 3JHH = 5.8 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 155.78 (1C, Cq quinoline), 150.87 (1C, Cq quinoline), 150.75 (1C, CHtriazole), 142.48 (1C, CHtriazole), 136.29 (1C, Cq quinoline), 135.74 (1C, CHquinoline), 133.72 (1C, Cq benzene), 133.40 (1C, Cq benzene), 132.67 (1C, Cq benzene), 130.31 (1C, Cq quinoline), 128.41 (1C, CHbenzene), 126.52 (1C, CHquinoline), 126.49 (1C, CHbenzene), 126.18 (1C, CHquinoline), 120.41 (1C, CHbenzene), 116.71 (1C, CHquinoline), 109.29 (1C, CHquinoline), 59.65 (1C, N–CH2), 54.66 (1C, N–CH2), 52.59 (1C, CH2 ethyl), 46.87 (1C, CH2 ethyl). ESI-HRMS: m/z calculated for C21H19Cl2N5O [19c+H]+ 428.1039, found 428.1043.
Synthetized similarly to 12a, starting from 18 (136 mg, 0.5 mmol) reacted with ortho-vanillin (76 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude compound was purified by silica column chromatography (CHCl3/MeOH, 98:2, Rf = 0.3). The combined fractions containing the target compound were evaporated, the residue was treated with HCl 0.1 M (4 mL), and the insoluble matter was filtered off with a PTFE filter. The aqueous solution was then adjusted to pH 10 by addition of KOH and extracted with CHCl3 (3 × 20 mL). The combined organic layers were dried with anhydrous Na2SO4, filtered, and evaporated to dryness. The compound was obtained as a yellow oil in 49% yield (99 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 8.57 (br s, 1H, OH), 7.99 (s, 1H, CHtriazole), 7.79 (s, 1H, CHtriazole), 7.26 (d, 3JHH = 1.7 Hz, 1H, CHbenzene), 7.09–7.00 (m, 2H), 6.75–6.67 (m, 2H), 6.58 (dd, 3JHH = 7.4, 4JHH = 1.4 Hz, 1H, CHphenol), 4.17 (t, 3JHH = 6.2 Hz, 2H, CH2 ethyl), 3.78 (s, 3H, O–CH3), 3.72 (s, 2H, N–CH2), 3.64 (s, 2H, N–CH2), 2.93 (t, 3JHH = 6.2 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 151.06 (1C, CHtriazole), 146.64 (1C, Cq phenol), 144.61 (1C, Cq phenol), 142.65 (1C, CHtriazole), 133.95 (1C, Cq benzene), 133.11 (1C, Cq benzene), 132.32 (1C, Cq benzene), 131.01 (1C, CHbenzene), 128.55 (1C, CHbenzene), 126.38 (1C, CHbenzene), 120.98 (1C, Cq phenol), 120.53 (1C, CHphenol), 118.50 (1C, CHphenol), 110.10 (1C, CHphenol), 55.32 (1C, N–CH2), 54.89 (1C, O–CH3), 54.73 (1C, N–CH2), 52.20 (1C, CH2 ethyl), 46.39 (1C, CH2 ethyl). ESI-HRMS: m/z calculated for C19H21Cl2N4O2 [19d+H]+ 407.1036, found 407.1038.
Synthetized similarly to 12a, starting from 18 (136 mg, 0.5 mmol) reacted with 5-bromosalicylaldehyde (101 mg, 0.5 mmol) and NaBH3CN (63 mg, 1 mmol). The crude compound was purified by silica column chromatography (CHCl3/MeOH, 99.5:0.5, Rf = 0.1). The compound was obtained as a brown oil in 19% yield (43 mg).
1H NMR (CDCl3, 400 MHz, ppm): δH = 9.30 (br s, 1H, OH), 7.92 (s, 1H, CHtriazole), 7.83 (s, 1H, CHtriazole), 7.32 (d, 4JHH = 2.0 Hz, 1H, CHbenzene), 7.20 (dd, 3JHH = 8.5 Hz, 4JHH = 2.4 Hz, 1H, CHbenzene), 7.12 (dd, 3JHH = 8.2, 4JHH = 2.1 Hz, 1H, CHphenol), 7.06 (d, 4JHH = 2.3 Hz, 1H, CHphenol), 7.02 (d, 3JHH = 8.3 Hz, 1H, CHbenzene), 6.63 (d, 3JHH = 8.6 Hz, 1H, CHphenol), 4.19 (t, 3JHH = 6.1 Hz, 2H, CH2 ethyl), 3.69 (s, 2H, N–CH2), 3.66 (s, 2H, N–CH2), 2.99 (t, 3JHH = 6.1 Hz, 2H, CH2 ethyl). 13C NMR (CDCl3, 100 MHz, ppm): δC = 156.05 (1C, Cq phenol), 152.18 (1C, CHtriazole), 143.45 (1C, CHtriazole), 135.17 (1C, Cq benzene), 134.74 (1C, Cq benzene), 132.46 (1C, Cq benzene), 132.39 (1C, CHbenzene), 132.22 (1C, CHbenzene), 131.70 (1C, CHphenol), 129.82 (1C, CHbenzene), 127.62 (1C, CHphenol), 123.33 (1C, Cq phenol), 118.28 (1C, CHphenol), 111.44 (1C, Cq phenol), 57.43 (1C, N–CH2), 55.80 (1C, N–CH2), 53.47 (1C, CH2 ethyl), 47.13 (1C, CH2 ethyl). ESI-HRMS: m/z calculated for C18H18Cl2N4OBr [19e+H]+ 457.0013, found 457.0011.