HRID1062849

反应详情

EQUATION

反应方程式

HRID 1062849 的结构方程式

AUXILIARIES

试剂、催化剂与溶剂

3

CONDITIONS

反应条件

温度
60 °C

PROCEDURE

实验过程

In a 1L 3-neck flask, equipped with a mechanical stirrer, were mixed phenyl magnesium chloride (96.1 mL; 192 mmol; 2.00M in THF) and lithium thiophenoxide (211 mL; 211 mmol; 1.00M THF) under a blanket of nitrogen. This mixture was heated to 60° C. for 1 h, and then cooled to 0-5° C. with an ice bath. In a separate 150 mL flask, nickel acetylacetonate (“anhydrous”; 0.617 g; 2.40 mmol; 0.025 equiv.) was dissolved under nitrogen in anhydrous THF (100 mL). To this green solution was added trimethylphosphine (4.8 mL; 4.80 mmol; 1.00M in toluene; 0.05 equiv.) forming a blue solution. After stirring for 10 min, solid 4-cyanopyridine (10.0 g; 96.1 mmol; 1 equiv.) was added to the catalyst mixture forming a green solution. This solution was added via addition funnel to the PhMgCl/PhSLi reaction solution at a rate which maintained the reaction temperature below 15° C. After the addition was complete, the reaction was heated at 60° C. for 2 h. The reaction was then allowed to cool to room temperature, and was poured into 1M aqueous sodium citrate (500 mL). The organic layer was separated and the aqueous layer extracted three times with MTBE (265 mL each). The combined organic phase was extracted three times with 2N aqueous HCl (250 mL each) and this combined aqueous extract was basified to pH≈12 with 1N aqueous NaOH. This mixture was then extracted three times with MTBE (330 mL each) and the combined organic phase was dried over anhydrous magnesium sulfate. After filtration of the drying agent, solvent was removed in vacuo leaving 14.1 g (91% yield) of 4-phenylpyridine as a light yellow solid. GC analysis of the product showed it to be >95% pure.

WORKUP

后处理

  1. temperaturecooled to 0-5° C. with an ice bath
  2. customforming a blue solution
  3. customforming a green solution
  4. temperaturemaintained the reaction temperature below 15° C
  5. additionAfter the addition
  6. temperaturethe reaction was heated at 60° C. for 2 h
  7. temperatureto cool to room temperature
  8. customThe organic layer was separated
  9. extractionthe aqueous layer extracted three times with MTBE (265 mL each)
  10. extractionThe combined organic phase was extracted three times with 2N aqueous HCl (250 mL each)
  11. extractionthis combined aqueous extract
  12. extractionThis mixture was then extracted three times with MTBE (330 mL each)
  13. dry with materialthe combined organic phase was dried over anhydrous magnesium sulfate
  14. filtrationAfter filtration of the drying agent, solvent
  15. customwas removed in vacuo