Department of Chemistry, Rasht Branch, Islamic Azad University, Rasht, Iran.
Department of Chemistry, Payame Noor University, PO Box 19395-3697 Tehran, Iran.
Curr Org Synth. 2020;17(8):648-653. doi: 10.2174/1570179417666200520111536.
synthesis of pyrano[c-2,3]chromens with Ionic Liquid catalyst with simple method.
Synthesis of pyrano[c]coumarins has a special place in the structure due to two bioactive compounds in its structure and attracts a great deal of attention in this research work, it has been attempted to attach chromatically valuable skeletons to them and synthesize the pyrano [c] coumarines, which can potentially have high biological properties. For this purpose, electrophilic β-ketoester ringing in the presence of ionic liquid catalysts was used. While optimizing the catalyst recovery, it is possible to synthesize several coumarine pyrano[ c]derivatives with high yield.
This paper describes an efficient procedure for the multi-component reaction of aromatic aldehydes, 4,4,4-Trifluoro-1-phenyl-1,3-butanedione and 4-hydroxycoumarinwhich catalyzed by Ioniq liquid (OlmDSA), at room temperature. This catalyst was synthesized with new simple procedure. This protocol has advantages of simplicity, mild condition and high yield.
After formation of a new stain corresponding to the alkene intermediate, 4-hydroxy coumarin (1 mM) was added. The reaction was progressed by thin layer chromatography in a 1: 2 ratio solvent containing ethyl acetate and hexane. The reaction mixture was then stirred for one hour. After the reaction was complete, the catalyst was first removed by washing. Ethanol was then added to the reaction residue and washed and finally filtered. The residual solid on the filter paper after drying was considered as the product and was taken to confirm. its structure, melting point and spectra. The following is a general overview of the reaction.
In addition to the advantages mentioned for this tri-component reaction, the conservation of the coumarin ring is very important in this research design because it is formed in many of the reported open reactions and phenolic ring.
The benefits of this work include simple reaction steps, review of reaction progress by TLC chromatography, simple separation of the catalyst by washing and reuse for three times without any reduction in yield and high reaction yield.
用简单的方法用离子液体催化剂合成吡喃并[c-2,3]色烯。
由于其结构中含有两种生物活性化合物,吡喃并[c]香豆素的合成在结构中占有特殊地位,因此在这项研究工作中引起了极大的关注。人们试图在它们上附加有价值的色质骨架,并合成潜在具有高生物特性的吡喃[c]香豆素。为此,在离子液体催化剂的存在下,用亲电β-酮酯环化。在优化催化剂回收的同时,可以以高产率合成几种香豆素吡喃[c]衍生物。
本文描述了一种在室温下用离子液体(OlmDSA)催化芳香醛、4,4,4-三氟-1-苯基-1,3-丁二酮和 4-羟基香豆素的多组分反应的有效程序。这种催化剂是用新的简单方法合成的。该方案具有简单、温和、产率高的优点。
形成新的对应于烯烃中间体的污渍后,加入 4-羟基香豆素(1mM)。反应通过含有乙酸乙酯和正己烷的 1:2 溶剂的薄层色谱法进行。然后将反应混合物搅拌一小时。反应完成后,首先通过洗涤除去催化剂。然后将乙醇加入反应残渣中,进行洗涤,最后过滤。干燥后滤纸残留的固体被认为是产物,并进行确认。其结构、熔点和光谱。反应的一般概述如下。
除了这种三组分反应的优点外,在这个研究设计中,香豆素环的保留非常重要,因为它在许多报道的开环反应和酚环中形成。
这项工作的优点包括反应步骤简单,通过 TLC 色谱法检查反应进度,通过洗涤简单分离催化剂,可重复使用三次而不降低产率,以及高反应产率。