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首页> 外文期刊>Iranian Journal of Catalysis >Carbon catalyst derived from Himalayan pine for the C-N coupling of organic molecules leading to pyrrole formation
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Carbon catalyst derived from Himalayan pine for the C-N coupling of organic molecules leading to pyrrole formation

机译:源自喜马拉雅松的碳催化剂,用于有机分子的C-N偶联,导致形成吡咯

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Carbon catalyst consisting of a hybrid structure made up of amorphous carbon and nanographite was prepared from the leaves of Pinus Roxburghii. The catalyst was prepared through sodium hydroxide and hydrochloric acid treatment of the dried pine leaves; and further functionalized with sulfuric acid treatment to incorporate the acidic functionalities. The synthesized catalyst was characterized by FTIR, XRD, TEM and XPS spectroscopic techniques and used as a heterogeneous catalyst for C-N coupling reaction leading to pyrrole formation through the nucleophilic attack of nitrogen atom in amines or imines on the dicarbonyl compounds. The optimized method was explored on various 2,4- and 2,5- dicarbonyl compounds and it was found to afford the five member pyrrole nucleus is good to excellent yields. The scope of the reaction was demonstrated by synthesizing thirteen pyrrole derivatives that are well characterized by IR, NMR and mass spectrometry. The mechanism of the reaction was proposed and acidic sites present on the catalyst surface are believed to be the active sites in the conversion.
机译:由松树的叶子制备了由无定形碳和纳米石墨组成的杂化结构的碳催化剂。通过氢氧化钠和盐酸处理干燥的松叶制备催化剂。并通过硫酸处理进一步官能化以合并酸性官能团。合成的催化剂通过FTIR,XRD,TEM和XPS光谱技术进行表征,并用作C-N偶联反应的多相催化剂,通过胺或亚胺中氮原子对二羰基化合物的亲核攻击而形成吡咯。探索了对各种2,4-和2,5-二羰基化合物的优化方法,发现提供的五元吡咯核具有良好的产率。通过合成13种吡咯衍生物证明了反应的范围,这些吡咯衍生物通过IR,NMR和质谱法得到了很好的表征。提出了反应机理,认为存在于催化剂表面的酸性位点是转化中的活性位点。

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