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钴催化α-取代丙烯酸酯的对映选择性硼氢化反应

Cobalt-Catalyzed Enantioselective Hydroboration of α-Substituted Acrylates.

作者信息

Patil Manoj D, Ghosh Kiron Kumar, RajanBabu T V

机构信息

Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210, United States.

出版信息

J Am Chem Soc. 2024 Mar 13;146(10):6604-6617. doi: 10.1021/jacs.3c12020. Epub 2024 Mar 3.

Abstract

Even though metal-catalyzed enantioselective hydroborations of alkenes have attracted enormous attention, few preparatively useful reactions of α-alkyl acrylic acid derivatives are known, and most use rhodium catalysts. No examples of asymmetric hydroboration of the corresponding α-arylacrylic acid esters are known. In our continuing efforts to search for new applications of earth-abundant cobalt catalysts for broadly applicable organic transformations, we have identified 2-(2-diarylphosphinophenyl)oxazoline ligands and mild reaction conditions for efficient and highly regio- and enantioselective hydroboration of α-alkyl- and α-aryl- acrylates, giving β-borylated propionates. Since the C-B bonds in these compounds can be readily replaced by C-O, C-N, and C-C bonds, these intermediates could serve as valuable chiral synthons, some from feedstock carbon sources, for the synthesis of propionate-bearing motifs including polyketides and related molecules. Two-step syntheses of "Roche" ester from methyl methacrylate (79%; er 99:1), arguably the most widely used chiral fragment in polyketide synthesis, and tropic acid esters (∼80% yield; er ∼93:7), which are potential intermediates for several medicinally important classes of compounds, illustrate the power of the new methods. Mechanistic studies confirm the requirement of a cationic Co(I) species [()Co]as the viable catalyst in these reactions and rule out the possibility of a []Co-H-initiated route, which has been well-established in related hydroborations of other classes of alkenes. A mechanism involving an oxidative migration of a boryl group to the β-carbon of an η-coordinated acrylate-cobalt complex is proposed as a plausible route.

摘要

尽管金属催化的烯烃对映选择性硼氢化反应已引起广泛关注,但关于α-烷基丙烯酸衍生物的具有制备价值的反应却鲜为人知,且大多数反应使用铑催化剂。目前还没有相应的α-芳基丙烯酸酯不对称硼氢化反应的实例。在我们持续致力于探索储量丰富的钴催化剂在广泛适用的有机转化中的新应用时,我们已确定了2-(2-二芳基膦基苯基)恶唑啉配体以及温和的反应条件,可实现α-烷基和α-芳基丙烯酸酯的高效、高区域选择性和对映选择性硼氢化反应,生成β-硼化丙酸酯。由于这些化合物中的C-B键可轻易被C-O、C-N和C-C键取代,这些中间体可作为有价值的手性合成子,其中一些来自原料碳源,用于合成含丙酸酯基序的化合物,包括聚酮化合物及相关分子。由甲基丙烯酸甲酯合成“罗氏”酯的两步反应(产率79%;对映体过量比为99:1),这可能是聚酮化合物合成中使用最广泛的手性片段,以及托品酸酯的合成(产率约80%;对映体过量比约为93:7),托品酸酯是几种具有重要药用价值的化合物的潜在中间体,这些都说明了新方法的强大之处。机理研究证实了阳离子Co(I)物种[()Co]作为这些反应中可行催化剂的必要性,并排除了[]Co-H引发途径的可能性,该途径在其他类烯烃的相关硼氢化反应中已得到充分证实。提出了一种涉及硼基向η-配位丙烯酸酯-钴配合物的β-碳进行氧化迁移的机理,作为一种合理的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88d0/11407689/93036f88fbad/nihms-2019687-f0001.jpg

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