Harikrishnan Adhikesavan, Sanjeevi Jayakumar, Ramanathan Chinnasamy Ramaraj
Department of Chemistry, Pondicherry University, Puducherry - 605 014, India.
Org Biomol Chem. 2015 Mar 28;13(12):3633-47. doi: 10.1039/c4ob02597k.
An efficient C-C bond formation strategy between aromatic/heteroaromatic π-nucleophiles and Lewis acid activated aldehydes is described. This aromatic electrophilic substitution reaction of arenes or heteroarenes is facilitated by Lewis acid AlBr3. Aromatic rings with electron donating substituents are excellent nucleophilic counterparts in this reaction, generating carbinols in excellent yields (61-94%). The formation of triarylmethanes is also witnessed in the case of certain reactive aldehydes and aromatic π-nucleophiles through reactive carbocation formation. The formation of triarylmethane is reduced to a greater extent via retardation of the second π-nucleophile addition through a Lewis base, for example, pyridine, coordination with an aluminium alkoxide intermediate. Various aliphatic aldehydes also underwent Friedel-Crafts type hydroxyalkylation and generated the expected carbinols in moderate yields (41-53%) in the presence of AlBr3. This protocol has been successfully applied to the synthesize of the (±)-carbinoxamine, a therapeutically important histamine H1 antagonist, in a one-pot manner.
本文描述了一种在芳香族/杂芳香族π-亲核试剂与路易斯酸活化的醛之间形成C-C键的有效策略。芳烃或杂芳烃的这种芳香亲电取代反应由路易斯酸AlBr₃促进。带有供电子取代基的芳香环是该反应中出色的亲核对应物,能以优异的产率(61-94%)生成甲醇。在某些活性醛和芳香π-亲核试剂的情况下,通过活性碳正离子的形成也能观察到三芳基甲烷的生成。通过路易斯碱(例如吡啶)与烷氧基铝中间体配位,减缓第二个π-亲核试剂的加成,三芳基甲烷的形成会在很大程度上减少。在AlBr₃存在下,各种脂肪醛也会发生傅克型羟基烷基化反应,并以中等产率(41-53%)生成预期的甲醇。该方案已成功应用于以一锅法合成治疗上重要的组胺H1拮抗剂(±)-卡比沙明。