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Fe3O4@SiO2@KIT-6作为一种高效且可重复使用的催化剂用于合成新型3,3'-((芳基-1-苯基-1H-吡唑-4-基)亚甲基)双(1H-吲哚)衍生物

Fe3O4@SiO2@KIT-6 as an Efficient and Reusable Catalyst for the Synthesis of Novel Derivatives of 3,3'-((Aryl-1-phenyl-1H-pyrazol-4- yl)methylene)bis (1H-indole).

作者信息

Nikpassand Mohammad, Fekri Leila Zare, Nabatzadeh Mozhdeh

机构信息

Department of Chemistry, Rasht Branch, Islamic Azad University, Rasht. Iran.

Department of Chemistry, Payame Noor University, P.O. Box 19395-3697, Tehran. Iran.

出版信息

Comb Chem High Throughput Screen. 2017;20(6):533-538. doi: 10.2174/1386207320666170425123248.

Abstract

AIM AND OBJECTIVE

Korea advanced institute of science and technology cubic ordered mesoporous silica (KIT-6 mesoporous) silica coated magnetite nanoparticles, is an effective, ecobenign and recyclable catalyst for the electrophilic substitution reactions of indoles with various synthetized aldehydes to afford the corresponding novel diindolylmethanes in high yields and short reaction times. The catalyst can be recovered and reused without loss of activity. The work-up of the reaction consists of a simple separation, followed by concentration of the crude product and purification. The present methodology offers several advantages such as aqueous media, excellent yields, simple procedure, mild conditions and reduced environmental consequences. All of synthesized compounds are new and were characterized by IR, NMR and elemental analyses.

MATERIALS AND METHODS

A mixture of synthetized pyrazolecarbaldehydes [24] (2.0mmol), indole (4.0mmol) and Fe3O4@SiO2@KIT-6 (0.04mmol) and H2O (10mL) were stirred at room temperature for the required reaction time according to Table 2. After completion of the reaction, the product was solved in CHCl3 (3×10 mL) and insoluble catalyst was removed by filtration in the presence of an efficient magnetic bar. The organic phase including the product and CHCl3 was evaporated under vacuum. The resulting crude material was purified by recrystallization from EtOH to afford pure products.

RESULTS

As part of our on interest for the development of efficient and environmentally friendly procedures for the synthesis of heterocyclic and pharmaceutical compounds, an efficient, facile and aqueous media was introduced for the synthesis of novel derivatives of diindolylmethanes containing pyrazole moiety. A variety of synthetized aldehyde compounds reacted smoothly with indoles to produce diindolylmethanes under these reaction conditions. The electron deficiency and the nature of the substituents on the aromatic ring show some effects on this conversion. All the reactions were run with catalytic amounts of catalysts. The best results gained with 0.04mmol of Fe3O4@SiO2@KIT-6 as a strong Lewis acid at room temperature in aqueous media.

CONCLUSION

In conclusion, we have investigated the synthesized KIT-6 mesoporous silica coated magnetite nanoparticles (MMNPs) as a mild and efficient catalyst for the synthesis of novel diindolylmethanes coupled with pyrazole moiety in aqua media. The simplicity, easy workup together with the use of inexpensive, environmentally friendly and reusable catalyst, is the notable features of this catalytic procedure. To the best of our knowledge, this is the first report for the synthesis of a new library of diindolylmethane compound bearing pyrazole moiety that enhance the biological and pharmacological activity.

摘要

目的与目标

韩国科学技术院立方有序介孔二氧化硅(KIT - 6介孔)包覆磁铁矿纳米颗粒,是一种有效、环境友好且可回收的催化剂,用于吲哚与各种合成醛的亲电取代反应,能在短反应时间内高产率地得到相应的新型二吲哚甲烷。该催化剂可回收再利用且活性不损失。反应后处理包括简单分离,随后浓缩粗产物并进行纯化。本方法具有多种优点,如在水介质中反应、产率优异、步骤简单、条件温和且环境影响小。所有合成的化合物均为新化合物,并通过红外光谱、核磁共振和元素分析进行了表征。

材料与方法

将合成的吡唑甲醛[24](2.0 mmol)、吲哚(4.0 mmol)和Fe3O4@SiO2@KIT - 6(0.04 mmol)以及水(10 mL)的混合物在室温下按照表2所需的反应时间进行搅拌。反应完成后,将产物溶于CHCl3(3×10 mL),在高效磁棒存在下通过过滤除去不溶性催化剂。将包含产物和CHCl3的有机相在真空下蒸发。所得粗产物通过乙醇重结晶进行纯化以得到纯产物。

结果

作为我们对开发高效且环境友好的杂环和药物化合物合成方法感兴趣的一部分,引入了一种高效、简便且在水介质中的方法来合成含吡唑部分的新型二吲哚甲烷衍生物。在这些反应条件下,多种合成的醛化合物与吲哚顺利反应生成二吲哚甲烷。芳环上的缺电子性和取代基的性质对这种转化有一定影响。所有反应均使用催化量的催化剂。在水介质中室温下,以0.04 mmol的Fe3O4@SiO2@KIT - 6作为强路易斯酸可获得最佳结果。

结论

总之,我们研究了合成的KIT - 6介孔二氧化硅包覆磁铁矿纳米颗粒(MMNPs)作为一种温和且高效的催化剂,用于在水介质中合成含吡唑部分的新型二吲哚甲烷。这种催化方法的显著特点是简单、后处理容易,同时使用了廉价、环境友好且可重复使用的催化剂。据我们所知,这是首次报道合成带有吡唑部分的新型二吲哚甲烷化合物库,该化合物库增强了生物和药理活性。

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