催化作用
化学
膜
基质(水族馆)
缩合反应
组合化学
有机化学
醋酸铵
产量(工程)
营业额
冷凝
路易斯酸
反应条件
路易斯酸催化
催化循环
多相催化
有机合成
偶联反应
作者
Swetha Jaisankar,Shyamapada Nandi
标识
DOI:10.1016/j.ceja.2026.101156
摘要
• Cost-effective, robust, pyrazole-functionalized DUT-67-PZDC MOF have been demonstrated for the Hantzsch reaction • Excellent yield of substrates was demonstrated with a wide substrate scope. • Catalyst displayed high Turnover numbers and Turnover frequency • Easy processability of the catalyst to the membrane for facile recovery and recyclability was confirmed • The catalyst can perform multi-fold Hantzsch reaction Dihydropyridines, owing to their diverse biological activities, are an important class of heterocyclic scaffolds in pharmaceutical chemistry. Commonly used methodology for the synthesis of DHPs is the Hantzsch Condensation reaction in the presence of a catalyst. Herein, we present a pyrazole-functionalized robust Zr-Metal Organic Framework, DUT-67-PZDC, and its membrane for tandem Hantzsch Condensation reaction. The presence of pyrazole moieties introduces Lewis basic sites, while the Zr cluster serves as Lewis acidic sites, facilitating the multicomponent condensation of aldehydes, β-ketoesters, and ammonium acetate under mild conditions, affording the corresponding 1,4-dihydropyridine derivatives with excellent yields (≥90%), Turnover number (∼55-102) and turnover frequency (8.7-17 h -1 ). Notably, MOF-derived self-standing membrane exhibits similar activity while improving the catalyst recovery. Both powder and membrane forms of DUT-67-PZDC demonstrate high stability and retain catalytic performance over multiple reaction cycles, ensuring their recyclability. This catalyst not only provides a broad substrate scope but also facilitates a multifold Hantzsch Condensation reaction.
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