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光氧化还原外消旋化实现的对映汇聚式6π电环化反应

Enantioconvergent 6π Electrocyclization Enabled by Photoredox Racemization.

作者信息

Ričko Sebastijan, Bitsch René Slot, Kaasik Mikk, Otevřel Jan, Højgaard Madsen Mikkel, Keimer Anna, Jørgensen Karl Anker

机构信息

Department of Chemistry, Aarhus University, DK-8000 Aarhus C, Denmark.

Aarhus Institute of Advanced Studies, Aarhus University, DK-8000 Aarhus C, Denmark.

出版信息

J Am Chem Soc. 2023 Sep 27;145(38):20913-20926. doi: 10.1021/jacs.3c06227. Epub 2023 Sep 12.

Abstract

This study presents a novel photoredox-enabled enantioconvergent catalytic strategy used to construct chiral 2-1,3-benzoxazines via an unprecedented oxa-6π electrocyclization utilizing racemic α-substituted glycinates as substrates. The approach leverages a cobalt-based chiral Lewis acid catalyst, which promotes the transformation under thermal or photoredox conditions. While the thermal reaction selectively converts only the ()-configured glycinates into enantioenriched 2-1,3-benzoxazines (up to 96:4 e.r.), the addition of 0.5 mol % of a commercially available iridium photocatalyst under visible light irradiation transforms the reaction into an enantioconvergent process. Detailed mechanistic and time course studies of optically pure α-deuterated substrates revealed the presence of an enantiospecific kinetic isotope effect, which helped to clarify the role of both the photo- and chiral Lewis acid catalyst in the reaction sequence. In this dual catalytic system, the photocatalyst promotes a dynamic interconversion between the substrate enantiomers─a process not accessible via ground-state chemistry─while the chiral Lewis acid selectively transforms only the ()-configured substrates. Further mechanistic evidence for the proposed mechanism is provided by linear free energy relationship analysis, which suggests that the stereodetermining step involves a 6π electrocyclization under both thermal and photoredox conditions.

摘要

本研究提出了一种新型的光氧化还原介导的对映收敛催化策略,该策略用于通过前所未有的氧杂-6π电环化反应构建手性2,1,3-苯并恶嗪,利用外消旋α-取代甘氨酸酯作为底物。该方法利用了一种钴基手性路易斯酸催化剂,它在热或光氧化还原条件下促进转化。虽然热反应仅选择性地将()-构型的甘氨酸酯转化为对映体富集的2,1,3-苯并恶嗪(对映体比例高达96:4),但在可见光照射下添加0.5 mol%的市售铱光催化剂可将反应转化为对映收敛过程。对光学纯的α-氘代底物进行的详细机理和时间进程研究揭示了对映体特异性动力学同位素效应的存在,这有助于阐明光催化剂和手性路易斯酸催化剂在反应序列中的作用。在这个双催化体系中,光催化剂促进底物对映体之间的动态相互转化——这是一个通过基态化学无法实现的过程——而手性路易斯酸仅选择性地转化()-构型的底物。线性自由能关系分析为所提出的机理提供了进一步的机理证据,表明立体决定性步骤在热和光氧化还原条件下均涉及6π电环化反应。

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