双吲哚甲烷类化合物(BIAs)是一系列具有很好的生物活性的代谢产物.采用苊醌和取代吲哚为原料,合成2,2-二(1H-吲哚-3-基)-2H-苊-1-酮类化合物,对反应条件进行探索研究,得到了合成该类化合物的一种简单有效的方法.以10%的樟脑磺酸(CSA)为...双吲哚甲烷类化合物(BIAs)是一系列具有很好的生物活性的代谢产物.采用苊醌和取代吲哚为原料,合成2,2-二(1H-吲哚-3-基)-2H-苊-1-酮类化合物,对反应条件进行探索研究,得到了合成该类化合物的一种简单有效的方法.以10%的樟脑磺酸(CSA)为催化剂,无水乙醇为溶剂,在回流条件下反应30min左右,产物收率达到93%以上.产物均经过1 H NMR,13 C NMR,IR,MS和元素分析表征确认.展开更多
The synthesis of an new photochromical compound,1,3,3 trimethyl 6′ (1 piperidinyl) spiro[2h indole 2,3′ [3H]pyridobenzoxazine (SP3),and an improved way for the synthesis of 6 hydroxyquinoline were descrided.The abso...The synthesis of an new photochromical compound,1,3,3 trimethyl 6′ (1 piperidinyl) spiro[2h indole 2,3′ [3H]pyridobenzoxazine (SP3),and an improved way for the synthesis of 6 hydroxyquinoline were descrided.The absorption spectrum of the colored metastable form SP3 shows prominent absorption peak at 560nm at 60℃?展开更多
An efficient Cu catalyzed selective arylation/annulation cascade reaction of 2-alkynylanilines with diaryliodonium salts was developed.This reaction was selective to N-arylation instead of C-arylation,which provides a...An efficient Cu catalyzed selective arylation/annulation cascade reaction of 2-alkynylanilines with diaryliodonium salts was developed.This reaction was selective to N-arylation instead of C-arylation,which provides a simple synthetic method for N-aryl indoles.展开更多
An efficient metal-free strategy for the synthesis of pharmaceutically relevant benzo[α]carbazoles from the derivatives of readily available 2-phenylindole and bio-renewable acetol in an aqueous biphasic system was d...An efficient metal-free strategy for the synthesis of pharmaceutically relevant benzo[α]carbazoles from the derivatives of readily available 2-phenylindole and bio-renewable acetol in an aqueous biphasic system was developed. This protocol employed a sulfone-containing Bronsted acidic ionic liquid as the catalyst, which could be used for five times without a noticeable decrease in its activity and selectivity. Various substituted 2-phenylindoles and α-hydroxyketones participated in the reaction smoothly, with water as the sole byproduct. Mechanistically, the reaction involved the conventional carbon-nucleophile-induced Heyns-type rearrangement and downstream intramolecular olefination.展开更多
文摘双吲哚甲烷类化合物(BIAs)是一系列具有很好的生物活性的代谢产物.采用苊醌和取代吲哚为原料,合成2,2-二(1H-吲哚-3-基)-2H-苊-1-酮类化合物,对反应条件进行探索研究,得到了合成该类化合物的一种简单有效的方法.以10%的樟脑磺酸(CSA)为催化剂,无水乙醇为溶剂,在回流条件下反应30min左右,产物收率达到93%以上.产物均经过1 H NMR,13 C NMR,IR,MS和元素分析表征确认.
文摘The synthesis of an new photochromical compound,1,3,3 trimethyl 6′ (1 piperidinyl) spiro[2h indole 2,3′ [3H]pyridobenzoxazine (SP3),and an improved way for the synthesis of 6 hydroxyquinoline were descrided.The absorption spectrum of the colored metastable form SP3 shows prominent absorption peak at 560nm at 60℃?
基金supported by the Intercollegiate Key Scientific Research Projects of Henan Province(15A150018)~~
文摘An efficient Cu catalyzed selective arylation/annulation cascade reaction of 2-alkynylanilines with diaryliodonium salts was developed.This reaction was selective to N-arylation instead of C-arylation,which provides a simple synthetic method for N-aryl indoles.
基金supported by the National Natural Science Foundation of China(21761132014,21872060)the Fundamental Research Funds for the Central Universities of China(2016YXZD033)+1 种基金the Fundamental Research Funds for the Central Universities(2019kfyXJJS072)Opening fund of Hubei Key Laboratory of Material Chemistry and Service Failure(2017MCF01K)~~
文摘An efficient metal-free strategy for the synthesis of pharmaceutically relevant benzo[α]carbazoles from the derivatives of readily available 2-phenylindole and bio-renewable acetol in an aqueous biphasic system was developed. This protocol employed a sulfone-containing Bronsted acidic ionic liquid as the catalyst, which could be used for five times without a noticeable decrease in its activity and selectivity. Various substituted 2-phenylindoles and α-hydroxyketones participated in the reaction smoothly, with water as the sole byproduct. Mechanistically, the reaction involved the conventional carbon-nucleophile-induced Heyns-type rearrangement and downstream intramolecular olefination.