Using an available compound 3 pentanone(1) as starting material, the key intermediate compound 4,6 dimethyl 3,7 nonandione(5) was synthesized through the addition elimination of silylenol ether and Michael addition of...Using an available compound 3 pentanone(1) as starting material, the key intermediate compound 4,6 dimethyl 3,7 nonandione(5) was synthesized through the addition elimination of silylenol ether and Michael addition of α methylene 3 pentanone(4) with silylenol ether(2). In the presence of chiral reagent 6 β phenyl amino 3 β,5α chlorestandiol(7), compound (5) was reduced by KBH 4 directly to give Tobacco Beetle Pheromone (7S) (-) 4,6 dimethyl 7 hydroxyl 3 nonanone(6). 25 D=-35 87°( c =0 23, CHCl 3), overall yield 23 9%.展开更多
基于姜黄素类天然化合物1-(4′-羟基-3′-甲氧基苯基)-7-(4″-甲氧基)-5-羟基-3-庚酮的多种生物药理活性,对其合成方法进行了探索。以香草醛和和茴香醛为原料,经过Knoevenagel反应、还原、酯化、氧化和缩合等主要反应,合成了目标化合物...基于姜黄素类天然化合物1-(4′-羟基-3′-甲氧基苯基)-7-(4″-甲氧基)-5-羟基-3-庚酮的多种生物药理活性,对其合成方法进行了探索。以香草醛和和茴香醛为原料,经过Knoevenagel反应、还原、酯化、氧化和缩合等主要反应,合成了目标化合物,并针对各步反应条件进行了优化,反应总收率为12.1%;目标产物及中间体的结构均经过质谱和1 H NMR核磁共振波谱进行了表征。该合成方法具有原料廉价易得、操作简便等优点,具有较高的工业价值。展开更多
文摘Using an available compound 3 pentanone(1) as starting material, the key intermediate compound 4,6 dimethyl 3,7 nonandione(5) was synthesized through the addition elimination of silylenol ether and Michael addition of α methylene 3 pentanone(4) with silylenol ether(2). In the presence of chiral reagent 6 β phenyl amino 3 β,5α chlorestandiol(7), compound (5) was reduced by KBH 4 directly to give Tobacco Beetle Pheromone (7S) (-) 4,6 dimethyl 7 hydroxyl 3 nonanone(6). 25 D=-35 87°( c =0 23, CHCl 3), overall yield 23 9%.
文摘基于姜黄素类天然化合物1-(4′-羟基-3′-甲氧基苯基)-7-(4″-甲氧基)-5-羟基-3-庚酮的多种生物药理活性,对其合成方法进行了探索。以香草醛和和茴香醛为原料,经过Knoevenagel反应、还原、酯化、氧化和缩合等主要反应,合成了目标化合物,并针对各步反应条件进行了优化,反应总收率为12.1%;目标产物及中间体的结构均经过质谱和1 H NMR核磁共振波谱进行了表征。该合成方法具有原料廉价易得、操作简便等优点,具有较高的工业价值。