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An efficient catalytic method for the synthesis of pyrido2,3‐ d pyrimidines as biologically drug candidates by using novel magnetic nanoparticles as a reusable catalyst

机译:用新型磁性纳米粒子作为可再用催化剂合成吡啶2,3-D嘧啶作为生物药物候选物的有效催化方法

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摘要

A convenient method for the synthesis of pyrido[2,3-d]pyrimidines by using the novel nano-magnetic silica-bonded S-sulfonic acid[Fe3O4@SiO2@(CH2)3S–SO3H] as an efficient and recyclable catalyst under neat conditions is described. The major advantages of the present methodology are high yield, short reaction time, and reusability of the catalyst. Furthermore, the nano-magnetic silica-bonded S-sulfonic acid was fully characterized by using various techniques such as FT-IR, TG/DTG, DTA, EDX, μXRF, XRD, HRTEM, SEM, SEM elemental mapping, XPS, and N2 physisorption. The results obtained from this research support the idea of rational design, synthesis, and applications of task-specific and reusable catalysts for the preparation of various polynitrogenated heterocyclic compounds containing 1,4-dihydropyridine moieties.
机译:通过使用新型纳米磁性二氧化硅 - 磺酸[Fe3O4 -SiO 2 @(CH2)3S-SO3H]作为整洁的有效且可回收的催化剂来合成吡啶[2,3-D]嘧啶的方法。描述了条件。本方法的主要优点是高产,反应时间短,催化剂的可重用性。此外,通过使用FT-IR,Tg / DTG,DTA,EDX,μXRF,XRD,HRTEM,SEM,SEM元素映射,XPS和N2,通过使用各种技术(如FT-IR,TG / DTG,DTA,EDX,SEM,SEM元素映射,XPS和N2)完全表征纳米磁性二氧化硅键合的S-磺酸。理由。本研究获得的结果支持合理的设计,合成和可重复使用催化剂的合理设计,合成和应用的思想,用于制备含有1,4-二氢吡啶部分的各种多硝化杂环化合物。

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