...
首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Catalyst-Free One-Pot Three-Component Synthesis of 4-Hydroxy-3-pyrazolylcoumarins in Ethanol at Room Temperature: Enolisable Aroylhydrazones as Efficient Ambident Nucleophile
【24h】

Catalyst-Free One-Pot Three-Component Synthesis of 4-Hydroxy-3-pyrazolylcoumarins in Ethanol at Room Temperature: Enolisable Aroylhydrazones as Efficient Ambident Nucleophile

机译:在室温下乙醇中4-羟基-3-Pyrozolylcoumarins的无催化剂的单壶三组分合成:可溶解的芳酰肼作为高效的氛围亲核官能官

获取原文
获取原文并翻译 | 示例
           

摘要

A sustainable and atom economic synthesis of biologically important 4-hydroxy-3-pyrazolylcoumarin derivatives via a catalyst-free one-pot three-component reaction of arylglyoxals, 4-hydroxycoumarins, and aroylhydrazones has been successfully achieved. Significantly, this green protocol embraces ethanol as a green solvent, a catalyst-free room temperature reaction, column chromatography/recrystallization free product isolation, high atom economy (up to 91.65%), low E-factor (up to 0.29 g/g), and gram scale product formation. Remarkably, this method has been successfully utilized for synthesis of polyheterocyclic 4-hydroxy-3-pyrazolylcoumarin derivatives containing up to five different heterocycles. Additionally, employment of arylhydrazones instead of aroylhydrazones in the above reaction produces a new class of biologically and pharmacologically important hydrazones bearing 4-hydroxycoumarin along with different aryls and heterocycles. Unlike arylhydrazones, aroylhydrazones exhibit keto-enol tautomerism, and the enolic form promotes efficient ambidentate nucleophilic attack which leads to facile formation of 4-hydroxy-3-pyrazolylcoumarin derivatives in mild and eco-friendly reaction conditions.
机译:成功地实现了可持续的和原子经济经济合成生物学上重要的4-羟基-3-吡唑基源衍生物,通过芳基甘油氧体,4-羟基法林和芳酰肼的无催化剂的单三分组分反应。显着,这种绿色协议包括乙醇作为绿色溶剂,一种无催化剂室温反应,柱色谱/重结晶自由产物分离,高原子经济(高达91.65%),低e-infact(高达0.29 g / g)和克尺寸产品形成。值得注意的是,该方法已成功用于合成含有高达五种不同杂环的多碳环4-羟基-3-吡唑基屈罗林衍生物。另外,在上述反应中,在上述反应中使用芳基腙代替芳酰酰肼,产生一类新的生物学和药理学上重要的含有4-羟基苏格林的含有4-羟基苏格林的芳基和杂环。与芳基肼不同,芳酰肼表现出酮烯醇互抗变物,烯醇形式促进有效的外观亲核攻击,这导致4-羟基-3-吡唑基屈林素衍生物的体温和环保反应条件。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号