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苝二酰亚胺环芳作为联芳基对映异构化催化剂——对π-π催化和主客体手性转移的探索

Perylene Bisimide Cyclophanes as Biaryl Enantiomerization Catalysts─Explorations into π-π Catalysis and Host-Guest Chirality Transfer.

作者信息

Kroeger Asja A, Karton Amir

机构信息

School of Molecular Sciences, The University of Western Australia, 35 Stirling Highway, Crawley, Western Australia 6009, Australia.

出版信息

J Org Chem. 2022 May 6;87(9):5485-5496. doi: 10.1021/acs.joc.1c02719. Epub 2022 Jan 21.

Abstract

The racemization of axially chiral biaryls is a fundamental step toward transforming kinetic resolutions into dynamic kinetic resolutions (DKRs). The high enantiomerization barriers of many biaryl compounds of synthetic relevance, however, may render DKR strategies challenging. Here, we computationally explore the potential of a -xylene bridged perylene bisimide cyclophane to serve as a conceptually transferrable biaryl enantiomerization catalyst for fundamental biphenyl and binaphthyl scaffolds, as well as the versatile reagent 1,1'-binaphthyl-2,2'-diol and a precursor to the heterobiaryl ligand QUINAP. The calculated enantiomerization barriers of the different biaryls decrease by 19.8-73.2% upon complexation, suggesting that the cyclophane may form an effective biaryl racemization catalyst. We find that these observed barrier reductions predominantly originate from a combination of transition structure stabilization through π-π stacking interactions between the shape-complementary transition structures and catalyst, as well as ground-state destabilization of the less complementary reactants, indicating a generalizable strategy toward biaryl racemization catalysis. In exploring all enantiomerization pathways of the biaryls under consideration, we further find a systematic enantiomer- and conformer-dependent chirality transfer from biaryl to cyclophane in host-guest complexes.

摘要

轴手性联芳基的外消旋化是将动力学拆分转化为动态动力学拆分(DKR)的关键步骤。然而,许多具有合成相关性的联芳基化合物的高对映体异构化能垒可能使DKR策略具有挑战性。在此,我们通过计算探索了对二甲苯桥连苝二酰亚胺环芳作为一种概念上可转移的联芳基对映体异构化催化剂的潜力,该催化剂可用于基本的联苯和联萘骨架,以及通用试剂1,1'-联萘-2,2'-二醇和杂联芳基配体QUINAP的前体。计算结果表明,不同联芳基在络合后对映体异构化能垒降低了19.8 - 73.2%,这表明环芳可能形成一种有效的联芳基外消旋化催化剂。我们发现,观察到的能垒降低主要源于形状互补的过渡结构与催化剂之间通过π-π堆积相互作用实现的过渡结构稳定化,以及互补性较差的反应物的基态失稳,这表明了一种通用的联芳基外消旋化催化策略。在探索所考虑的联芳基的所有对映体异构化途径时,我们进一步发现,在主客体络合物中,从联芳基到环芳存在一种系统的、依赖对映体和构象的手性转移。

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