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三取代环丙烯的化学、区域和对映选择性氢甲酰化反应:通往手性季碳环丙烷的途径。

Chemo-, regio- and enantioselective hydroformylation of trisubstituted cyclopropenes: access to chiral quaternary cyclopropanes.

作者信息

Li Shuailong, Zhang Dequan, Purushothaman Aiswarya, Lv Hui, Shilpa Shilpa, Sunoj Raghavan B, Li Xiuxiu, Zhang Xumu

机构信息

Department of Chemistry and Shenzhen Key Laboratory of Small Molecule Drug Discovery and Synthesis, University of Science and Technology, Southern, 1088 Xueyuan Road, Shenzhen, 518055, China.

Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai, 400076, India.

出版信息

Nat Commun. 2024 Jul 29;15(1):6377. doi: 10.1038/s41467-024-50689-z.

Abstract

Catalytic asymmetric synthesis of polysubstituted chiral cyclopropane presents a significant challenge in organic synthesis due to the difficulty in enantioselective control. Here we report a rhodium-catalyzed highly chemo-, regio- and enantioselective hydroformylation of trisubstituted cyclopropenes affording chiral quaternary cyclopropanes. Importantly, the easy made sterically bulky ligand L1 can effectively suppress hydrogenation and decomposition reactions and give quaternary cyclopropanes with high regio- and enantioselectivities for both aryl and alkyl functionalized substrates. Control experiments and computational studies reveal the sterically hindered well-defined chiral pocket instead of the substrates bearing electron-withdrawing diester groups is important for controlling the enantioselectivity and regioselectivity. Scale-up reaction and follow-up diverse transformations are also presented. Density Functional theory (DFT) computations suggest that the regio- and enantio-selectivities originate from the cyclopropene insertion to the Rh-H bond. The high regioselectivity is found to benefit from the presence of more efficient noncovalent interactions (NCIs) manifesting in the form of C-H···Cl, C-H···N, and l.p(Cl)···π contacts.

摘要

由于对映选择性控制困难,多取代手性环丙烷的催化不对称合成在有机合成中面临重大挑战。在此,我们报道了一种铑催化的三取代环丙烯的高度化学、区域和对映选择性氢甲酰化反应,可得到手性季碳环丙烷。重要的是,易于制备的空间位阻大的配体L1能有效抑制氢化和分解反应,并为芳基和烷基官能化底物提供具有高区域和对映选择性的季碳环丙烷。对照实验和计算研究表明,空间位阻明确的手性口袋而非带有吸电子二酯基团的底物对于控制对映选择性和区域选择性很重要。还展示了放大反应和后续的多样转化。密度泛函理论(DFT)计算表明,区域和对映选择性源于环丙烯插入Rh-H键。发现高区域选择性得益于以C-H···Cl、C-H···N和孤对电子(Cl)···π接触形式表现的更有效的非共价相互作用(NCIs)的存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5da/11286865/360c696a74ca/41467_2024_50689_Fig1_HTML.jpg

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