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Mesoporous silica supported ytterbium as catalyst for synthesis of 1,2-disubstituted benzimidazoles and 2-substituted benzimidazoles

机译:中孔二氧化硅支持镱作为合成1,2-二取代的苯并咪唑和2-取代的苯并咪唑的催化剂

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摘要

The benzimidazole ring is an important pharmacophore in contemporary drug discovery. Thus, effort to identifying new compounds containing benzimidazole scaffolds have gained much attention in recent years. In the present study, MCM-41 type mesoporous silica with large pore (l-MSN) supported ytterbium was successfully prepared by wet impregnation method. Among rare earth metal salts, ytterbium triflate has already been widely investigated as a catalyst in organic synthesis but less toxic ytterbium oxide has yet to be explored. Relatively high abundance and low cost of ytterbium with respect to many catalytically active metals (e.g. Pd, Au, Ru, Ir, Pt) offer an opportunity to develop sustainable catalysts for organic conversions. The catalyst has been characterized by various techniques including nitrogen adsorption, FT-IR, TEM, SEM, EDX technique and elemental mapping. The obtained materials exhibit high surface area and a narrow distribution of mesoporosity. The catalytic performance of the Yb@l-MSNs was tested by synthesis of 1,2-disubstituted benzimidazoles and 2-substituted benzimidazoles through the coupling of aldehydes with o-phenylenediamine. The catalyst resulted in excellent yields in short reaction times and the reaction showed tolerance toward both electron-donating and electron-withdrawing functional groups at room temperature. A particularly interesting finding was the solvent selectivity of this reaction; namely, 1,2-disubstituted benzimidazoles generated as major product in water-ethanol, while the 2-substituted benzimidazoles was generated exclusively in non-polar solvents like toluene.
机译:苯并咪唑环是当代药物发现中的重要药程。因此,近年来努力识别含有苯并咪唑支架的新化合物的努力越来越大。在本研究中,通过湿浸渍方法成功制备了具有大孔(L-MSN)的MCM-41型中孔二氧化硅。在稀土金属盐中,镱三氟甲酸酯已被广泛研究为有机合成中的催化剂,但尚未探索氧化镱的含量较小。对于许多催化活性金属(例如Pd,Au,Ru,IR,Pt)的相对高的丰度和低成本,提供了开发可持续催化剂的有机转换的机会。该催化剂的特征在于各种技术,包括氮吸附,FT-IR,TEM,SEM,EDX技术和元素映射。所得材料表现出高表面积和狭窄的中间渗透性分布。通过合成1,2-二取代的苯并咪唑和2-取代的苯并咪唑来测试YB-L-MSN的催化性能通过用O-苯二胺的醛偶联。催化剂在短反应时间内得到优异的产率,反应显示在室温下对电子提供的电子和电子抽出官能团的耐受性。特别有趣的发现是该反应的溶剂选择性;即,在水 - 乙醇中作为主要产物产生的1,2-二取代的苯并咪唑,而2取代的苯并咪唑仅在甲苯等非极性溶剂中产生。

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