Hussein Mohanad A, Al-Ameed Karrar, Almansori Ali K, Owaid Naeemah Jabbar
Department of Biochemistry, College of Medicine, Jabir Ibn Hayyan University for Medical and Pharmaceutical Sciences Iraq.
Department of Chemistry, College of Science, The University of New South Wales Australia
RSC Adv. 2024 Oct 29;14(46):34428-34434. doi: 10.1039/d4ra04534c. eCollection 2024 Oct 23.
Amide bond formation is a fundamental reaction in organic synthesis, essential for the construction of peptides and various bioactive molecules. Traditional methods for amide bond formation often require harsh conditions, expensive reagents, or generate undesirable by-products. Herein, we report a novel and efficient method for amide bond formation utilizing tropylium ion organocatalysis. The tropylium ion, known for its stability and unique electronic properties, facilitates the activation of carboxylic acids and amines, promoting their coupling under mild conditions. This method demonstrates high yields and broad substrate scope, including sterically hindered and functionalized reactants. The mechanistic studies suggest that the tropylium ion acts as an electrophilic catalyst, enhancing the nucleophilicity of the amine and the electrophilicity of the carboxylic acid, thereby accelerating the formation of the amide bond. This work opens new avenues for the development of green and sustainable catalytic processes in organic synthesis. In order to explore the effect of the different substituents on the thermodynamics of the condensation reactions of the synthesized compounds, we have conducted a series of calculations using density functional theory to compute the reaction energies. The calculations also investigated the effect of the substitutions on the hydrogen migration in the tautomerism effect and the energy splitting of the frontier orbitals.
酰胺键形成是有机合成中的一种基本反应,对于肽和各种生物活性分子的构建至关重要。传统的酰胺键形成方法通常需要苛刻的条件、昂贵的试剂,或者会产生不良副产物。在此,我们报道了一种利用环庚三烯正离子有机催化进行酰胺键形成的新颖且高效的方法。环庚三烯正离子以其稳定性和独特的电子性质而闻名,它能够促进羧酸和胺的活化,在温和条件下促进它们的偶联。该方法具有高收率和广泛的底物范围,包括空间位阻较大和官能化的反应物。机理研究表明,环庚三烯正离子作为亲电催化剂,增强了胺的亲核性和羧酸的亲电性,从而加速了酰胺键的形成。这项工作为有机合成中绿色和可持续催化过程的发展开辟了新途径。为了探索不同取代基对合成化合物缩合反应热力学的影响,我们使用密度泛函理论进行了一系列计算以计算反应能量。这些计算还研究了取代对互变异构效应中氢迁移以及前沿轨道能量分裂的影响。