Nitrophenyl ferulate was synthesized in one step without the protection of the hydroxyl of ferulic acid in the presence of 1,3 dicyclohexylcarbodiimide(DCC) as the catalyst. Thus, 15 20 g of ferulic acid reacted with ...Nitrophenyl ferulate was synthesized in one step without the protection of the hydroxyl of ferulic acid in the presence of 1,3 dicyclohexylcarbodiimide(DCC) as the catalyst. Thus, 15 20 g of ferulic acid reacted with 18 07 g of 4 nitrophenol for 24 h at room temperature in the presence of 22 44 g of DCC. The crude product was recrystallized from CHCl 3 to give 16 00 g of 4 nitrophenyl ferulate and the yield was 82 5%. Elemental analysis, IR and 1H NMR techniques were used to prove the structure of the product.展开更多
文摘以碳化二亚胺改性二苯基甲烷二异氰酸酯(MDI)间歇工艺为基础,设计出了连续化小试试验装置,然后进行了不同操作条件下试验,考查了反应温度、停留时间及催化剂用量等工艺条件对反应的影响.通过对试验结果的整理和分析,可认定该连续化工艺完全可行,并找到了较优操作条件:反应温度200-205℃、催化剂质量分数为2.5%,助催化剂为0.15%,反应停留时间控制在1.5 h,反应平衡时间为2 h.
文摘Nitrophenyl ferulate was synthesized in one step without the protection of the hydroxyl of ferulic acid in the presence of 1,3 dicyclohexylcarbodiimide(DCC) as the catalyst. Thus, 15 20 g of ferulic acid reacted with 18 07 g of 4 nitrophenol for 24 h at room temperature in the presence of 22 44 g of DCC. The crude product was recrystallized from CHCl 3 to give 16 00 g of 4 nitrophenyl ferulate and the yield was 82 5%. Elemental analysis, IR and 1H NMR techniques were used to prove the structure of the product.