Maleki Ali, Aghaei Morteza
Catalysts and Organic Synthesis Research Laboratory, Department of Chemistry, Iran University of Science and Technology, Tehran 16846-13114, Iran.
Catalysts and Organic Synthesis Research Laboratory, Department of Chemistry, Iran University of Science and Technology, Tehran 16846-13114, Iran.
Ultrason Sonochem. 2017 Sep;38:115-119. doi: 10.1016/j.ultsonch.2017.03.014. Epub 2017 Mar 8.
A sonochemical approach for the one-pot three-component synthesis of pyridoimidazoisoquinolines via by using phthalaldehyde, trimethylsilylcyanide and aminopyridines the presence of a catalytic amount of a new nanomagnetic catalyst FeO@SiO-CO-CH-NH is described. The characterization of the nanocatalyst and the product was done by various methods, such as FT-IR, SEM, EDX, TGA/DTA, NMR, MS and CHN analyses. This is the first design, preparation, characterization and application of the present core/shell nanomaterial and also the first ultrasound irradiated synthesis of the biologically and pharmaceutically important fused polycyclic compounds in ethanol as a green solvent. This novel protocol offers several advantages such as high yields, short reaction times, environmentally-friendly reaction media, easily isolation of the products, simple preparation and recoverability of the nanocatalyst by an external magnet and reusing several times without significant decrease in catalytic activity.
描述了一种声化学方法,该方法通过使用邻苯二甲醛、三甲基硅氰化物和氨基吡啶,在催化量的新型纳米磁性催化剂FeO@SiO-CO-CH-NH存在下,一锅法合成吡啶并咪唑异喹啉。通过各种方法对纳米催化剂和产物进行了表征,如傅里叶变换红外光谱(FT-IR)、扫描电子显微镜(SEM)、能谱分析(EDX)、热重/差热分析(TGA/DTA)、核磁共振(NMR)、质谱(MS)和元素分析(CHN分析)。这是本核壳纳米材料的首次设计、制备、表征和应用,也是首次在绿色溶剂乙醇中超声辐射合成具有生物学和药学重要性的稠合多环化合物。这种新颖的方法具有几个优点,如高产率、短反应时间、环境友好的反应介质、产物易于分离、纳米催化剂制备简单且可通过外部磁铁回收,并可重复使用多次而催化活性无显著降低。