首页> 外文期刊>Synthetic Communications >Nano-Fe3O4@silica sulfuric acid as a reusable and magnetically separable potent solid acid catalyst in Biginelli-type reaction for the one-pot multicomponent synthesis of fused dihydropyrimidine derivatives: A greener NOSE and SFRC approach
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Nano-Fe3O4@silica sulfuric acid as a reusable and magnetically separable potent solid acid catalyst in Biginelli-type reaction for the one-pot multicomponent synthesis of fused dihydropyrimidine derivatives: A greener NOSE and SFRC approach

机译:纳米Fe3O4 @二氧化硅硫酸盐在Biginelli型反应中可重用和磁分离的强效固体酸催化剂,用于单锅多组分合成二氢嘧啶衍生物的熔融:更环保的NOSE和SFRC方法

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摘要

An efficient, highly product selective, eco-friendly, one-pot multicomponent synthesis of dihydropyrimidine derivatives via Biginelli reaction has been described. The reaction was developed by greener nanoparticle-catalyzed organic synthesis enhancement (NOSE) chemistry and solvent free reaction condition (SFRC) approaches, which helped us in making the procedure greener. The reaction went smoothly with a diverse range of aromatic, aliphatic, hetero-aromatic aldehydes, different amine sources, as well as various -dicarbonyl compounds, showing the flexibility of this methodology. Magnetically separable nano-Fe3O4@SiO2@SO3H, which acts as a potent solid acid catalyst, was characterized by FT-IR, SEM, EDX and TEM, VSM, and TGA analyses. The catalyst was recycled from the reaction mixture easily by an external magnet and reused in five more consecutive runs without much decrease in catalytic activity. Its catalytic efficiency was compared to other nano and bulk solid acid catalyst in order to ascertain the best combination for the conversion.
机译:已经描述了通过Biginelli反应的高效,高产物选择性,生态友好的一锅多组分合成二氢嘧啶衍生物。通过更绿色的纳米颗粒催化的有机合成增强(NOSE)化学和无溶剂反应条件(SFRC)方法开发了该反应,这有助于我们使该过程更绿色。该反应与各种芳族,脂族,杂芳族醛,不同的胺源以及各种-二羰基化合物进行得很顺利,显示了该方法的灵活性。通过FT-IR,SEM,EDX和TEM,VSM和TGA分析表征了可磁分离的纳米Fe3O4 @ SiO2 @ SO3H,它是一种有效的固体酸催化剂。催化剂可通过外部磁体轻松地从反应混合物中回收,并在不降低催化活性的情况下,连续五次重复使用。为了确定转化的最佳组合,将其催化效率与其他纳米和本体固体酸催化剂进行了比较。

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