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通过光氧化还原-镍-氢原子转移三重催化实现β-羰基化合物与简单烯烃的直接不对称α-烷基化反应

Direct Asymmetric α-Alkylation of β-Ketocarbonyl Compounds with Simple Olefins by Photoredox-Nickel-Hydrogen Atom Transfer Triple Catalysis.

作者信息

Zhou Xue-Song, Li Zi-Qing, Qu Wen-Yuan, Zhang Zhihan, Xiao Wen-Jing, Chen Jia-Rong

机构信息

Engineering Research Center of Photoenergy Utilization for Pollution Control and Carbon Reduction, College of Chemistry, Central China Normal University, 152 Luoyu Road, Wuhan, Hubei, 430079, China.

Wuhan Institute of Photochemistry and Technology, 7 North Bingang Road, Wuhan, Hubei, 430083, China.

出版信息

Angew Chem Int Ed Engl. 2025 Apr 17;64(17):e202424915. doi: 10.1002/anie.202424915. Epub 2025 Feb 25.

Abstract

Although the asymmetric α-alkylation of carbonyl compounds with activated olefins has already been established, extending this methodology to less activated or nonactivated olefins remains a significant challenge due to the polarity mismatch in these ionic processes. An alternative approach involves the activation of the parent carbonyl compounds into electrophilic α-carbonyl radicals, which could potentially overcome this limitation. However, the lack of efficient catalytic systems has impeded the wide adoption of this strategy, particularly in realm of the catalytic asymmetric reactions. Here, we present a cooperative triple catalytic system that integrates photoredox, chiral Lewis acid, and hydrogen atom transfer (HAT) catalysts to achieve a direct asymmetric α-alkylation of β-ketocarbonyl compounds using simple olefins as alkylating agents. By combining a multifunctional chiral nickel Lewis acid with an iridium photoredox catalyst and a thiophenol catalyst under visible light, we have developed a highly efficient process that is temporally synchronized to facilitate a novel mechanism of electron and hydrogen transfer. This triple catalytic approach enables the intermolecular coupling of β-ketocarbonyl compounds with both less and non-activated olefins. This redox-neutral protocol provides an atom- and step-economic route to enantioselectively synthesize high-value molecules featuring an all-carbon quaternary stereocenter from feedstock chemicals, while only consuming photons.

摘要

尽管羰基化合物与活性烯烃的不对称α-烷基化反应已经确立,但由于这些离子过程中的极性不匹配,将该方法扩展到活性较低或未活化的烯烃仍然是一个重大挑战。另一种方法是将母体羰基化合物活化为亲电α-羰基自由基,这有可能克服这一限制。然而,缺乏高效的催化体系阻碍了该策略的广泛应用,特别是在催化不对称反应领域。在此,我们提出了一种协同三催化体系,该体系整合了光氧化还原、手性路易斯酸和氢原子转移(HAT)催化剂,以简单烯烃为烷基化试剂实现β-酮羰基化合物的直接不对称α-烷基化反应。通过在可见光下将多功能手性镍路易斯酸与铱光氧化还原催化剂和苯硫酚催化剂相结合,我们开发了一种高效的过程,该过程在时间上同步,以促进一种新的电子和氢转移机制。这种三催化方法能够实现β-酮羰基化合物与活性较低和未活化烯烃的分子间偶联。这种氧化还原中性的方法提供了一种原子和步骤经济的途径,可从原料化学品对映选择性地合成具有全碳季碳立体中心的高价值分子,同时仅消耗光子。

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