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Synthesis of quinolines via Friedl?nder reaction catalyzed by CuBTC metal-organic-framework

机译:CuBTC金属-有机骨架催化Friedl?nder反应合成喹啉

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摘要

Friedl?nder condensation between 2-aminoaryl ketones and different carbonyl compounds, catalyzed by CuBTC was investigated by a combination of various experimental techniques and by density functional theory based modelling. CuBTC exhibiting hard Lewis acid character showed highly improved catalytic activity when compared with other molecular sieves showing high concentraion of Lewis acid sites, e.g. in BEA and (Al)SBA-15. Polysubstituted quinolines were synthesized via a Friedl?nder reaction catalyzed by CuBTC under the solvent-free conditions. High concentration of active sites in CuBTC together with the concerted effect of a pair of adjacent Cu ~(2+) coordinatively unsaturated active sites are behind a very high quinoline yield reached within a short reaction time. Results reported here make CuBTC a promising catalyst for other Lewis acid-promoted condensations, including those leading to biologically active compounds with a particular relevance for the pharmaceutical industry. The mechanism of a catalyzed Friedl?nder reaction investigated computationally is also reported.
机译:通过结合各种实验技术和基于密度泛函理论的建模,研究了CuBTC催化的2-氨基芳基酮与不同羰基化合物之间的Friedlnder缩合。与显示出高路易斯酸位点浓度的其他分子筛相比,具有硬路易斯酸特性的CuBTC表现出高度改善的催化活性。在BEA和(Al)SBA-15中。在无溶剂条件下,通过CuBTC催化的Friedlnder反应合成多取代的喹啉。 CuBTC中高活性位点的浓度以及一对相邻的Cu〜(2+)配位不饱和活性位点的协同作用是在短时间内达到很高的喹啉产量的原因。此处报道的结果使CuBTC成为其他路易斯酸促进的缩合反应的有前途的催化剂,包括那些导致生物活性化合物与制药工业特别相关的缩合反应。还报道了通过计算研究的催化弗里德林德反应机理。

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