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阳离子钯催化的非对称内炔烃的区域和立体选择性顺式 1,2-双官能团化。

Cationic-palladium catalyzed regio- and stereoselective syn-1,2-dicarbofunctionalization of unsymmetrical internal alkynes.

机构信息

School of Chemistry, University of Hyderabad, Hyderabad, India.

Institut de Chimie Moléculaire et des Matériaux d'Orsay, CNRS UMR 8182, Université Paris-Saclay, Bâtiment 420, Orsay cedex, France.

出版信息

Nat Commun. 2022 Mar 16;13(1):1360. doi: 10.1038/s41467-022-28949-7.

Abstract

π-Extended tetrasubstituted olefins are widely found motifs in natural products, leading drugs, and agrochemicals. Thus, development of modular strategies for the synthesis of complex all-carbon-substituted olefins always draws attention. The difunctionalization of unsymmetrical alkynes is an attractive approach but it has remained faced with regioselectivity issues. Here we report the discovery of a regio- and stereoselective syn-1,2-dicarbofunctionalization of unsymmetrical internal alkynes. A cationic Pd-catalyzed three-component coupling of aryl diazonium salts, aryl boronic acids (or olefins) and yne-acetates enables access to all-carbon substituted unsymmetrical olefins. The transformation features broad scope with labile functional group tolerance, building broad chemical space of structural diversity (94 molecules). The value of this synthetic method is demonstrated by the direct transformation of natural products and drug candidates containing yne-acetates, to enable highly substituted structurally complex allyl acetate analogues of biologically important compounds. Synthetic versatility of the carboxylate bearing highly substituted olefins is also presented. The reaction outcome is attributed to the in situ formation of stabilized cationic aryl-Pd species, which regulates regioselective aryl-palladation of unsymmetrical yne-acetates. Control experiments reveal the synergy between the carboxylate protecting group and the cationic Pd-intermediate in the regioselectivity and reaction productivity; density functional theory (DFT) studies rationalize the selectivity of the reaction.

摘要

π-扩展的四取代烯烃广泛存在于天然产物、药物和农用化学品中。因此,开发用于合成复杂全碳取代烯烃的模块化策略一直备受关注。不对称炔烃的双官能化是一种很有吸引力的方法,但它仍然面临着区域选择性问题。在这里,我们报告了一种不对称内炔烃的区域和立体选择性顺式-1,2-双官能化的发现。芳基重氮盐、芳基硼酸(或烯烃)和炔-乙酸酯的阳离子 Pd 催化的三组分偶联反应能够得到全碳取代的不对称烯烃。该转化具有广泛的范围和对不稳定官能团的耐受性,构建了广泛的化学空间结构多样性(94 个分子)。该合成方法的价值通过含有炔-乙酸酯的天然产物和药物候选物的直接转化得到了证明,从而能够得到具有生物重要化合物的高度取代的结构复杂的烯丙基乙酸酯类似物。带羧酸盐的高取代烯烃的合成多功能性也得到了展示。反应结果归因于稳定的阳离子芳基-Pd 物种的原位形成,该物种调节了不对称炔-乙酸酯的区域选择性芳基钯化。控制实验揭示了羧酸盐保护基和阳离子 Pd 中间体在区域选择性和反应产率方面的协同作用;密度泛函理论(DFT)研究合理说明了反应的选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc8a/8927424/20dff4979494/41467_2022_28949_Fig1_HTML.jpg

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