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首页> 外文期刊>Research on Chemical Intermediates >A ternary hybrid system based on combination of mesoporous silica, heteropolyacid and double-layered clay: an efficient catalyst for the synthesis of 2,4-dihydro-3H-pyrazol-3-ones and pyranopyrazoles in aqueous medium: studying the effect of the synthetic procedure on the catalytic activity
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A ternary hybrid system based on combination of mesoporous silica, heteropolyacid and double-layered clay: an efficient catalyst for the synthesis of 2,4-dihydro-3H-pyrazol-3-ones and pyranopyrazoles in aqueous medium: studying the effect of the synthetic procedure on the catalytic activity

机译:基于介孔二氧化硅,杂多酸和双层粘土的组合的三元杂化系统:在水性介质中合成2,4-二氢-3H-吡唑-3-吡喃唑和嘧唑的有效催化剂:研究合成的效果 催化活性的程序

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摘要

SBA/hydrotalcite/heteropolyacid nanocomposite is synthesized via a novel procedure in which the as-prepared heteropolyacid-loaded SBA-15 was impregnated with calcined hydrotalcite. The ternary hybrid system was characterized by using SEM/EDS, XRD, BET, TPD, TGA, FTIR and ICP-AES and also used as an efficient catalyst for the synthesis of 2,4-dihydro-3H-pyrazol-3-one derivatives via the reaction of arylaldehydes and 5-methyl-1H-pyrazol-3(2H)-one under reflux condition. Moreover, the catalytic activity of this catalyst was confirmed for the one-pot four-component reaction of aryl aldehydes, ethylacetoacetate, malononitrile and hydrazine hydrate/phenyl hydrazine in aqueous media for the synthesis of pyranopyroles. The investigation of the effect of the synthetic procedure and calcination of the hydrotalcite on the catalytic activity of the catalyst established that this factor does not exert a marked effect on the catalytic activity. The present procedures benefit from diverse advantages, including high yields, simplicity, mild reaction conditions and short reaction times. Moreover, this catalyst was reusable for up to five reaction runs and the HPA leaching was suppressed.
机译:通过一种新的方法合成SBA /水滑石/杂多酸纳米复合材料,其中用煅烧的水滑石浸渍了制备的杂酸负载的SBA-15。三元杂化系统的特征在于使用SEM / EDS,XRD,BET,TPD,TGA,FTIR和ICP-AES,也用作合成2,4-二氢-3H-吡唑-3-一种衍生物的有效催化剂在回流条件下,通过芳基醛和5-甲基-1H-吡唑-3(2H)的反应。此外,确认该催化剂的催化活性用于芳基醛,乙基乙酸乙酯,丙二腈和肼水合物/苯肼的一锅四组分反应,用于合成吡喃吡咯。对催化剂催化活性的合成程序和煅烧的效果的研究确定该因素对催化活性没有明显影响。目前的程序受益于多种优点,包括高产率,简单性,轻度反应条件和短反应时间。此外,该催化剂可重复使用最多五种反应,并且抑制了HPA浸出。

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