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Solvent-free synthesis of polyhydroquinoline derivatives employing mesoporous vanadium ion doped titania nanoparticles as a robust heterogeneous catalyst via the Hantzsch reaction

机译:介孔钒离子掺杂的二氧化钛纳米粒子作为无杂多相催化剂的无溶剂合成,通过汉茨反应

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Mesoporous vanadium ion doped titania nanoparticles (V–TiO2) were used as a reusable and robust heterogeneous catalyst for one-pot four component synthesis of polyhydroquinoline derivatives via the esteemed Hantzsch reaction using arylaldehyde, β-ketoester, dimedone and ammonium acetate at 80 °C under solvent-free conditions as a multi-component synthesis. On the other hand, the catalytic activity of V–TiO2 was compared with undoped commercial titania nanocatalyst. This protocol was successfully pertinent to a wide range of structurally diverse arylaldehydes with β-ketoester, dimedone and ammonium acetate to afford the corresponding polyhydroquinoline derivatives. Operational simplicity, short reaction time and satisfactory yields are the key features of this protocol. The catalyst could easily be recycled and reused without observable decrease in catalytic activity.
机译:介孔钒离子掺杂的二氧化钛纳米粒子(V–TiO 2 )被用作可重复使用且坚固的多相催化剂,用于通过在无溶剂条件下,使用芳基醛,β-酮酸酯,二甲酮和乙酸铵在无溶剂条件下进行的著名的Hantzsch反应作为多组分合成。另一方面,将V–TiO 2 的催化活性与未掺杂的商业二氧化钛纳米催化剂进行了比较。该方案成功地与各种结构多样的芳基醛与β-酮酸酯,二甲酮和乙酸铵有关,从而提供了相应的聚氢喹啉衍生物。操作简便,反应时间短和令人满意的产率是该方案的关键特征。该催化剂可以容易地再循环和再利用,而没有明显降低的催化活性。

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