HRID571029

反应详情

EQUATION

反应方程式

HRID 571029 的结构方程式

AUXILIARIES

试剂、催化剂与溶剂

2

CONDITIONS

反应条件

温度
100 °C

PROCEDURE

实验过程

To a stirred mixture of 6-amino-7-fluoro-3-methyl-3H-benzoimidazole-5-carboxylic acid methyl ester (6) (8.00 g, 34.16 mmol) and cesium carbonate (22.48 g, 68.31 mmol) in anhydrous anisole (76 mL) under nitrogen was added 4-bromo-2-chloroiodobenzene (1.60 g, 1.10 equiv., 4.88 mmol). The preformed catalyst, as prepared above, was then added to the mixture to provide a dark brown suspension, which was heated at 100±2° C., with stirring at 350 rpm. The reaction was monitored by HPLC analysis. After 41 hours, no 6-amino-7-fluoro-3-methyl-3H-benzoimidazole-5-carboxylic acid methyl ester (6) remained. The reaction mixture was cooled to about 80° C. and 1M sulfuric acid (40.99 mL 40.99 mmol) was added. Gas evolution was observed after 10 minutes and the rate of addition was controlled to moderate the effervescence. At the end of the addition the pH was between 7 and 8. Additional sulfuric acid (1M, 10.25 mL, 10.25 mmol) was then added to give mobile slurry with a pH of 0. The mixture was diluted with anisole (20 mL) and Celatom FW-14 filter agent was added. It was then filtered at about 80° C. through a water-wet pad of Celatom FW-14 filter agent and the cake was washed with anisole (1×40 mL+3×20 mL), then water (10 mL). The lower aqueous layer was separated and discarded and the organic layer was washed with 10% aqueous NaCl solution (2×40 mL). This was added to a sodium hydroxide (5.46 g, 68.3 mmol) in methanol (24 mL) and the mixture was heated at 65° C. with stirring. After 17.5 hours HPLC analysis indicated that the hydrolysis of the ester was complete and the slurry was cooled to 15° C., then filtered on a sinter. The solid was washed with water (4×24 mL), MTBE (24 mL), and acetonitrile (2×25 mL) and then dried at 45° C. in a vacuum oven to provide 11.07 g of 6-(4-bromo-2-chlorophenylamino)-7-fluoro-3-methyl-3H-benzoimidazole-5-carboxylic acid (7) as a fine pale brown solid (assay 93.7% by 1H NMR), actual wt 10.37 g (72.2% yield). 1H NMR (400 MHz, d6 DMSO) δ 3.85 (3H, s, NMe), 6.53 (1H, dd, J 9, 7, Ar—H), 7.27 (1H, dd, J 9, 2.5, Ar—H), 7.56 (1H, d, J 9, Ar—H), 7.97 (1H, s, Ar—H), 8.20 (1H, s, Ar—H), 11.5 (1H, s, CO2H). 13C NMR (100 MHz, d6 DMSO) δ 31 (CH3), 108 (CH, d, J 2), 109 (CH), 117 (C, d, J 6), 122 (C), 124 (C, d, J 7), 127 (C), 130 (C), 131 (C), 132 (C, d, J 9), 133 (C, d, J 11), 141 (C), 145 (CF, d, J 252), 146 (CH), 170 (C═O).

WORKUP

后处理

  1. customThe preformed catalyst, as prepared above,
  2. additionwas then added to the mixture
  3. customto provide a dark brown suspension, which
  4. temperatureThe reaction mixture was cooled to about 80° C.
  5. waitGas evolution was observed after 10 minutes
  6. additionthe rate of addition
  7. additionAt the end of the addition the pH was between 7 and 8
  8. customto give mobile slurry with a pH of 0
  9. filtrationfilter agent
  10. additionwas added
  11. filtrationIt was then filtered at about 80° C. through a water-wet pad of Celatom FW-14
  12. filtrationfilter agent
  13. washthe cake was washed with anisole (1×40 mL+3×20 mL)
  14. customThe lower aqueous layer was separated
  15. washthe organic layer was washed with 10% aqueous NaCl solution (2×40 mL)
  16. temperaturethe mixture was heated at 65° C.
  17. stirringwith stirring
  18. temperaturethe slurry was cooled to 15° C.
  19. filtrationfiltered on a sinter
  20. washThe solid was washed with water (4×24 mL), MTBE (24 mL), and acetonitrile (2×25 mL)
  21. customdried at 45° C. in a vacuum oven