Department of Chemistry, Government College University, Faisalabad 38000, Pakistan.
Department of Chemistry, University of Engineering & Technology Lahore, Faisalabad Campus, Faisalabad 38000, Pakistan.
Curr Org Synth. 2020;17(6):457-463. doi: 10.2174/1570179417666200511092332.
The pyrano[2,3-c]pyrazole derivatives are important building blocks of many biologically active compounds owing to their diverse biological potential for example, anti-inflammatory, anticancer, anti-microbial and anti-oxidant properties.
Keeping in mind the wide range of applications of pyrano[2,3-c]pyrazoles, herein we intended to develop a novel synthetic methodology for dihydropyranopyrazoles. We were also interested in determining the influence of amino acids and dipeptides as a catalyst on the synthesis of pyrano[2,3-c]pyrazole derivatives.
To achieve our objectives, we used a one-pot multi-component reaction of ethyl 3-oxobutanoate, propanedinitrile, hydrazine monohydrate and several substituted benzaldehydes by using different catalysts and solvents to synthesize our desired products in the presence of various catalysts.
We found that optimal conditions for the preparation of pyrano[2,3-c]pyrazoles were L-cysteine (0.5 mol) in the presence of water:ethanol (9:1) at 90 °C. Various 1,4-dihydropyrano[2,3- c]pyrazoles were afforded by using several substituted benzaldehydes in 66-97% yields.
We described a green and environmentally benign method to synthesize pyrano[2,3-c]pyrazoles in a one-pot four component reaction of ethyl 3-oxobutanoate, propanedinitrile, hydrazine monohydrate and different substituted benzaldehyde in the presence of L-cysteine in aqueous ethanol (9:1) at 90 oC. Excellent yields of the products, simple work-up, easily available starting materials, use of green solvents, naturally occurring catalyst, non-toxicity, non-chromatographic purification and environmentally benign reaction conditions are some main advantages of this protocol.
吡喃并[2,3-c]吡唑衍生物因其广泛的生物潜力而成为许多生物活性化合物的重要构建模块,例如抗炎、抗癌、抗微生物和抗氧化特性。
鉴于吡喃并[2,3-c]吡唑的广泛应用,本文旨在开发一种用于合成二氢吡喃并吡唑的新合成方法。我们还对氨基酸和二肽作为催化剂对吡喃并[2,3-c]吡唑衍生物合成的影响感兴趣。
为了实现我们的目标,我们使用一锅多组分反应,使用不同的催化剂和溶剂,由乙基 3-氧代丁酸酯、丙二腈、水合肼和几种取代的苯甲醛反应,在不同的催化剂存在下合成我们所需的产物。
我们发现,制备吡喃并[2,3-c]吡唑的最佳条件是在水:乙醇(9:1)中使用 L-半胱氨酸(0.5mol)作为催化剂,在 90°C 下进行反应。使用几种取代的苯甲醛,以 66-97%的产率得到各种 1,4-二氢吡喃并[2,3-c]吡唑。
我们描述了一种绿色环保的方法,在 L-半胱氨酸存在下,通过一锅四组分反应,由乙基 3-氧代丁酸酯、丙二腈、水合肼和不同取代的苯甲醛合成吡喃并[2,3-c]吡唑,在水:乙醇(9:1)中于 90°C 下进行反应。该方法具有产物收率高、操作简单、原料易得、使用绿色溶剂、催化剂天然、毒性低、无需色谱纯化、反应条件环保等优点。