首页> 外文期刊>The Journal of Organic Chemistry >DFT study of the mechanism and origin of enantioselectivity in chiral BINOL-phosphoric acid catalyzed transfer hydrogenation of ketimine and α-imino ester using benzothiazoline
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DFT study of the mechanism and origin of enantioselectivity in chiral BINOL-phosphoric acid catalyzed transfer hydrogenation of ketimine and α-imino ester using benzothiazoline

机译:DFT研究苯并噻唑啉在手性BINOL-磷酸催化的酮亚胺和α-亚氨基酯的转移加氢中对映选择性的机理和起源

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摘要

Benzothiazoline is an efficient reducing agent for the chiral BINOL-phosphoric acid catalyzed enantioselective transfer hydrogenation of ketimines and α-imino esters to afford the corresponding amines with high enantioselectivities. DFT studies (M05-2X/6-31G*//ONIOM(B3LYP/6- 31G*:HF/3-21G)) revealed the reaction mechanism and the origin of the high enantioselectivity in the present BINOL-phosphoric acid catalyzed transfer hydrogenation of ketimines and α-imino esters using benzothiazoline. The reaction mechanism is similar to that reported in the asymmetric transfer hydrogenation of ketimines using Hantzsch ester. Phosphoric acid simultaneously activates ketimine (α-imino ester) and benzothiazoline to form cyclic transition structures. The high enantioselectivity is attributed to the steric interaction between the substituents at the 3,3′-positions of BINOL-phosphoric acid and substrates. In contrast to the C_2- symmetrical Hantzsch ester, the readily tunable 2-aryl substituent of unsymmetrical benzothiazoline plays a significant role in the steric interaction, influencing the asymmetric induction. This feature is responsible for the advantage of benzothiazoline over Hantzsch ester.
机译:苯并噻唑啉是一种高效的还原剂,可用于酮亚胺和α-亚氨基酯的手性BINOL-磷酸催化的对映选择性转移氢化,从而提供具有高对映选择性的相应胺。 DFT研究(M05-2X / 6-31G * // ONIOM(B3LYP / 6-31G *:HF / 3-21G))显示了本BINOL-磷酸催化的转移氢化反应的反应机理和高对映选择性的起源苯并噻唑啉合成酮亚胺和α-亚氨基酯该反应机理与使用Hantzsch酯进行的酮亚胺的不对称转移氢化中报道的机理相似。磷酸同时激活酮亚胺(α-亚氨基酯)和苯并噻唑啉以形成环状过渡结构。高对映选择性归因于在BINOL-磷酸的3,3'-位的取代基与底物之间的空间相互作用。与C_2-对称Hantzsch酯相反,不对称苯并噻唑啉的易于调节的2-芳基取代基在空间相互作用中起着重要作用,影响不对称诱导。该特征归因于苯并噻唑啉优于汉茨ester酯。

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