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Selective and eco-friendly procedures for the synthesis of benzimidazole derivatives. The role of the Er(OTf)3 catalyst in the reaction selectivity

机译:合成苯并咪唑衍生物的选择性和环保方法。 Er(OTf)3催化剂在反应选择性中的作用

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摘要

An improved and greener protocol for the synthesis of benzimidazole derivatives, starting from o-phenylenediamine, with different aldehydes is reported. Double-condensation products were selectively obtained when Er(OTf)3 was used as the catalyst in the presence of electron-rich aldehydes. Conversely, the formation of mono-condensation products was the preferred path in absence of this catalyst. One of the major advantages of these reactions was the formation of a single product, avoiding extensive isolation and purification of products, which is frequently associated with these reactions.Theoretical calculations helped to understand the different reactivity established for these reactions. Thus, we found that the charge density on the oxygen of the carbonyl group has a significant impact on the reaction pathway. For instance, electron-rich aldehydes better coordinate to the catalyst, which favours the addition of the amine group to the carbonyl group, therefore facilitating the formation of double-condensation products.Reactions with aliphatic or aromatic aldehydes were possible, without using organic solvents and in a one-pot procedure with short reaction time (2–5 min), affording single products in excellent yields (75–99%). This convenient and eco-friendly methodology offers numerous benefits with respect to other protocols reported for similar compounds.
机译:据报道,从邻苯二胺开始,用不同的醛合成苯并咪唑衍生物的改进和绿色方案。当在富电子醛存在下使用Er(OTf)3作为催化剂时,有选择地获得了双缩合产物。相反,在不存在这种催化剂的情况下,单缩合产物的形成是优选的途径。这些反应的主要优点之一是形成单一产物,避免了产物的广泛分离和纯化,而产物通常与这些反应有关。理论计算有助于理解为这些反应建立的不同反应性。因此,我们发现羰基的氧上的电荷密度对反应路径有重大影响。例如,富电子醛与催化剂的配位更好,这有利于将胺基加到羰基上,从而促进双缩合产物的形成。与脂肪族或芳香族醛的反应是可能的,而无需使用有机溶剂和一锅操作,反应时间短(2–5分钟),单品收率极高(75–99%)。与报道的类似化合物的其他方案相比,这种方便且环保的方法学具有许多优点。

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