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通过不对称铜催化乙炔基氮杂芳烃的氢膦酰化反应制备手性2-氮杂芳基乙基膦氧化物。

Asymmetric copper-catalyzed hydrophosphinylation of ethynylazaarenes to access -chiral 2-azaaryl-ethylphosphine oxides.

作者信息

Zhang Jialiang, Guo Jiajia, Xu Ruhui, Zheng Di, Lian Kai, Zhang Zhaoxia, Cao Shanshan, Jiang Zhiyong

机构信息

School of Chemistry and Chemical Engineering, Henan Normal University Xinxiang Henan 453007 P. R. China

International Scientific and Technological Cooperation Base of Chiral Chemistry, Henan University Kaifeng Henan 475004 P. R. China.

出版信息

Chem Sci. 2025 Mar 3;16(14):5957-5966. doi: 10.1039/d5sc00358j. eCollection 2025 Apr 2.

Abstract

We report a cost-effective approach for the enantioselective hydrophosphinylation of ethynylazaarenes utilizing a chiral copper catalytic platform. This strategy efficiently converts racemic secondary phosphine oxides (SPOs) into -chiral tertiary phosphine oxides (TPOs) bearing functionalized olefin substituents with azaarene moieties, achieving high yields and exceptional enantioselectivities. These adducts serve as crucial intermediates in the development of valuable chiral 1,5-hybrid ,-ligands. The facile introduction of diverse additional carbon-centered chirality through the transformation of the olefin moiety effectively enhances the enantioselectivity of asymmetric metal catalysis compared to ligands exhibiting solely -chirality. Mechanistic investigations reveal that the interaction between the chiral Cu(i) complex and azaarenes promotes the kinetic resolution of SPOs. The robustness of this method is further demonstrated by its ability to incorporate deuterium atoms into the olefins, highlighting its potential relevance in pharmaceutical applications.

摘要

我们报道了一种利用手性铜催化平台对乙炔基氮杂芳烃进行对映选择性氢膦酰化反应的经济有效方法。该策略能有效地将外消旋仲膦氧化物(SPOs)转化为带有含氮杂芳烃部分的官能化烯烃取代基的α-手性叔膦氧化物(TPOs),实现高产率和优异的对映选择性。这些加合物是开发有价值的手性1,5-杂化α,α-配体的关键中间体。与仅表现出α-手性的配体相比,通过烯烃部分的转化轻松引入各种额外的碳中心手性有效地提高了不对称金属催化的对映选择性。机理研究表明,手性Cu(i)配合物与氮杂芳烃之间的相互作用促进了SPOs的动力学拆分。该方法通过将氘原子引入烯烃中的能力进一步证明了其稳健性,突出了其在药物应用中的潜在相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ce9/11963856/06f17b5d1957/d5sc00358j-s1.jpg

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