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Application of immobilized sulfonic acid on the cobalt ferrite magnetic nanocatalyst (CoFe2O4@SiO2@SO3H) in the synthesis of spirooxindoles

机译:固定化磺酸在螺辛吲哚的合成中钴铁氧体磁性纳米催化剂(Cofe2O4 @ SO3H)的应用

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摘要

Sulfonic acid immobilized on the surface of magnetically cobalt ferrite/silicate is a green, convenient, efficient and recyclable catalyst which can be applied in organic reactions ranges from lab to industry goals as a solid acid to achieve high yield products. After synthesizing (CoFe2O4/SiO2/SO3H), it was also characterized by using different techniques such as FT-IR, XRD, EDX, VSM, TEM, SEM, TGA and so on which everyone approved presented structure. In this study, we are on to use this catalyst in a certain multicomponent reaction that is a common way to produce heterocycle compounds in order to synthesis spirooxindole derivatives which possess biological capabilities as anticancer and antimicrobial drugs. Hence, the three-component reaction of malononitrile, dimedone and isatin were performed in one pot under optimized situations of 80 degrees C temperature, reflux condition and water/ethanol (1:1) mixture as the solvent. Also, the present study shows unique advantages, such as simple synthesis of the catalyst, high magnetic properties, easy separation of catalyst with a permanent magnet, and the application of inexpensive and available precursors. At the end of the reaction, we gained the high yields of product at a short time that represents the high catalytic activity of the catalyst.
机译:固定在磁性钴铁氧体/硅酸盐表面上的磺酸是一种绿色,方便,有效和可回收的催化剂,可用于有机反应的范围从实验室作为固体酸,以实现高产品。合成后(COFE2O4 / SIO2 / SO3H),其特征在于使用不同的技术,例如FT-IR,XRD,EDX,VSM,TEM,SEM,TGA等,每个人都批准所批准的结构。在这项研究中,我们将在某种多组分反应中使用该催化剂,这是产生杂环化合物的常用方法,以合成具有抗癌和抗微生物药物的生物能力的螺氧吲哚衍生物。因此,在80℃温度,回流条件和水/乙醇(1:1)混合物的优化情况下在一个罐中在一个罐中进行丙二腈,DimEdone和Isatin的三分组分反应,作为溶剂。此外,本研究表明了独特的优点,例如催化剂的简单合成,高磁性,用永磁体容易地分离催化剂,以及廉价且可用的前体的应用。在反应结束时,在短时间内,在代表催化剂的高催化活性的短时间内获得了高产量的产物。

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