Department of Chemical Engineering, National Cheng Kung University, Tainan, 70101, Taiwan.
Core Facility Center, National Cheng Kung University, Tainan, 70101, Taiwan.
Phys Chem Chem Phys. 2021 Dec 15;23(48):27498-27507. doi: 10.1039/d1cp03243g.
Deep eutectic solvents have been found to facilitate the copolymerization of hydroxy acids and amino acids through an ester-amide exchange reaction, and to drive the formation of amino acid-enriched oligomers with peptide backbones. The complexity of oligomer distribution is significantly reduced in deep eutectic solvents and amide-linked oligomers can be selectively produced. In the present study, we investigated the kinetics of amide bond formation in deep eutectic solvents to understand how the solvents regulate the pathways of complex copolymerization. A mathematical model successfully simulated the reaction of a lactic acid/valine mixture in deep eutectic solvents at different temperatures and provided insight into the activation energy of each step. Our findings indicated that the esterification and the evaporation of hydroxy acids were greatly suppressed in deep eutectic solvents because of the strong interaction between the quaternary ammonium salts and the hydroxy acids. In contrast, the ester-amide exchange reaction in deep eutectic solvents was significantly enhanced by lowering the activation entropies. The synergic effect of reduced esterification and increased exchange leads to amino acid-enriched oligomers with high yield and high selectivity. Furthermore, the reduced evaporation of hydroxy acids in deep eutectic solvents may preserve limited reactants in the prebiotic scenario. These results reveal deep eutectic solvents as sustainable media for the simple synthesis of amide bonds.
深共熔溶剂已被发现可通过酯-酰胺交换反应促进羟酸和氨基酸的共聚,并驱动富含氨基酸的低聚物形成具有肽骨架的低聚物。在深共熔溶剂中,低聚物分布的复杂性显著降低,可以选择性地产生酰胺键连接的低聚物。在本研究中,我们研究了酰胺键形成的动力学,以了解溶剂如何调节复杂共聚的途径。一个数学模型成功地模拟了乳酸/缬氨酸混合物在深共熔溶剂中在不同温度下的反应,为每个步骤的活化能提供了深入的了解。我们的研究结果表明,由于季铵盐与羟酸之间的强烈相互作用,深共熔溶剂中酯化和羟酸的蒸发被大大抑制。相比之下,通过降低活化熵,深共熔溶剂中的酯-酰胺交换反应显著增强。酯化反应的减少和交换反应的增加协同作用,导致具有高产率和高选择性的富含氨基酸的低聚物。此外,深共熔溶剂中羟酸蒸发的减少可能在原始生命场景中保留有限的反应物。这些结果揭示了深共熔溶剂作为简单合成酰胺键的可持续介质。