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使用新型含硼两性分子合成以前难以获得的硼代杂环基序。

Synthesis of Previously Inaccessible Borylated Heterocycle Motifs Using Novel Boron-Containing Amphoteric Molecules.

机构信息

Davenport Research Laboratories, Department of Chemistry, University of Toronto, 80 St. George St., Toronto, ON, M5S 3H6 (Canada).

出版信息

Angew Chem Int Ed Engl. 2015 Jul 27;54(31):9038-41. doi: 10.1002/anie.201504271. Epub 2015 Jun 25.

Abstract

The photoredox-organocatalyzed α-alkylation of the α-MIDA boryl aldehyde with a range of α-bromoketones resulted in the first examples of boron-containing 1,4-dicarbonyl compounds. These novel trifunctional amphoteric molecules, which bear an additional, strategically placed electrophilic site compared to the starting amphoteric α-boryl aldehyde, were subjected to double-condensation reactions in the presence of various nucleophiles. As a result, a variety of synthetically challenging 3-borylated pyrroles and furans and 4-borylated pyridazines were generated. The borylated regioisomers accessible with this condensation-based strategy are distinctly different from those arising from the well-known lithiation and C-H activation processes.

摘要

光氧化还原-有机催化的 α-MIDA 硼酸醛与一系列 α-溴代酮的 α-烷基化反应产生了首例含硼 1,4-二羰基化合物。与起始两性 α-硼酸醛相比,这些新型的三官能两性分子具有额外的、策略性放置的亲电位点,在各种亲核试剂的存在下进行双缩合反应。结果,生成了多种具有挑战性的 3-硼代吡咯和呋喃以及 4-硼代哒嗪。这种基于缩合的策略可获得的硼代区域异构体与那些由著名的锂化和 C-H 活化过程产生的异构体明显不同。

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