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通过氢键供体催化中的电荷识别实现氮杂环丁烷的对映选择性开环反应。

Enantioselective Ring Opening of Azetidines via Charge Recognition in Hydrogen-Bond-Donor Catalysis.

作者信息

Gair Joseph J, Isomura Mayuko, Wagen Corin C, Strassfeld Daniel A, Jacobsen Eric N

机构信息

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, United States.

出版信息

J Am Chem Soc. 2025 Feb 26;147(8):6378-6383. doi: 10.1021/jacs.5c00165. Epub 2025 Feb 17.

Abstract

We report the highly enantioselective ring-opening of 3-substituted azetidines by alkyl and acyl halides promoted by a chiral squaramide hydrogen-bond donor catalyst. Broad scope is achieved across a variety of substrate combinations possessing disparate steric features. The same catalyst had been identified previously to promote enantioselective opening of oxetanes via both Lewis and Brønsted acid mechanisms. This remarkable generality is interpreted to arise from catalyst recognition of the conserved electrostatic features of the dipolar enantioselectivity-determining transition states in the ring-opening S2 mechanisms with simultaneous tolerance of variation of the specific functional group and steric features of the reactions. Specific experimental and computational evidence is provided for a network of electrostatic interactions that forms a shared basis for enantioinduction across these transformations. This work provides a framework for designing catalysts that achieve high enantioselectivity across diverse reactions unified by conserved polar mechanisms.

摘要

我们报道了在手性方酰胺氢键供体催化剂促进下,3-取代氮杂环丁烷与卤代烷和酰卤发生的高度对映选择性开环反应。该反应在具有不同空间特征的各种底物组合中都具有广泛的适用范围。此前已鉴定出相同的催化剂可通过路易斯酸和布朗斯特酸机制促进氧杂环丁烷的对映选择性开环反应。这种显著的通用性被解释为源于催化剂对开环S2机制中决定对映选择性的偶极过渡态保守静电特征的识别,同时能够容忍反应中特定官能团和空间特征的变化。为静电相互作用网络提供了具体的实验和计算证据,该网络构成了这些转化过程中对映诱导的共同基础。这项工作为设计催化剂提供了一个框架,这些催化剂能够在由保守极性机制统一的各种反应中实现高对映选择性。

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1
Catalysis of an S2 pathway by geometric preorganization.通过几何预组织催化 S2 途径。
Nature. 2024 Aug;632(8027):1052-1059. doi: 10.1038/s41586-024-07811-4. Epub 2024 Jul 18.
3
Electrostatic Interactions in Asymmetric Organocatalysis.不对称有机催化中的静电相互作用。
Acc Chem Res. 2023 Jul 18;56(14):1990-2000. doi: 10.1021/acs.accounts.3c00198. Epub 2023 Jul 6.
7
Screening for generality in asymmetric catalysis.不对称催化中的一般性筛选。
Nature. 2022 Oct;610(7933):680-686. doi: 10.1038/s41586-022-05263-2. Epub 2022 Sep 1.

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