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对映选择性[2 + 2]光环化逆转实现环丁烷的从头消旋化合成。

Enantioselective [2 + 2] Photocycloreversion Enables De Novo Deracemization Synthesis of Cyclobutanes.

作者信息

Wang Jiahao, Fu Qianqian, Cao Shanshan, Lv Xinxin, Yin Yanli, Ban Xu, Zhao Xiaowei, Jiang Zhiyong

机构信息

Pingyuan Laboratory, School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan 453007, PR China.

Henan Key Laboratory of Natural Medicine Innovation and Transformation, Henan University, Kaifeng, Henan 475004, PR China.

出版信息

J Am Chem Soc. 2024 Aug 14;146(32):22840-22849. doi: 10.1021/jacs.4c08290. Epub 2024 Aug 2.

Abstract

While photochemical deracemization significantly enhances atom economy by eliminating the necessity for additional oxidants or reductants, the laborious presynthesis of substrates from feedstock chemicals is often required, thereby compromising the practicality of this method. In this study, we propose a novel approach known as de novo deracemization synthesis, which involves direct utilization of simple substrates undergoing both photochemical transformation and reversible photochemical transformation. The efficient enantiocontrol of chiral catalysts in the latter process establishes an effective platform for deracemization. This alternative and practical approach to address the challenges of asymmetric photocatalysis has been successfully demonstrated in the photosensitized de novo deracemization synthesis of azaarene-functionalized cyclobutanes featuring three stereocenters, including an all-carbon quaternary center. By exclusively employing a suitable chiral catalyst to enable kinetically controlled [2 + 2] photocycloreversion, we pave a creative path toward achieving more cost-effective photochemical deracemization.

摘要

虽然光化学消旋化通过消除对额外氧化剂或还原剂的需求显著提高了原子经济性,但通常需要从原料化学品费力地预合成底物,从而损害了该方法的实用性。在本研究中,我们提出了一种称为从头消旋化合成的新方法,该方法涉及直接利用经历光化学转化和可逆光化学转化的简单底物。手性催化剂在后一过程中的有效对映体控制为消旋化建立了一个有效的平台。这种解决不对称光催化挑战的替代且实用的方法已在具有三个立体中心(包括全碳季中心)的氮杂芳烃官能化环丁烷的光敏从头消旋化合成中得到成功证明。通过专门使用合适的手性催化剂来实现动力学控制的[2 + 2]光环化反转,我们为实现更具成本效益的光化学消旋化铺平了一条创新之路。

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