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作为能量转移反应基团的多硼化烯烃:通向结合氢原子转移过程的多硼化环丁烷的途径

PolyBorylated Alkenes as Energy-Transfer Reactive Groups: Access to Multi-Borylated Cyclobutanes Combined with Hydrogen Atom Transfer Event.

作者信息

Hanania Nicole, Eghbarieh Nadim, Masarwa Ahmad

机构信息

Institute of Chemistry, The Center for Nanoscience and Nanotechnology, and Casali Center for Applied Chemistry, The Hebrew University of Jerusalem, Jerusalem, 9190401, Israel.

出版信息

Angew Chem Int Ed Engl. 2024 Jun 17;63(25):e202405898. doi: 10.1002/anie.202405898. Epub 2024 May 15.

Abstract

While polyborylated alkenes are being recognized for their elevated status as highly valuable reagents in modern organic synthesis, allowing efficient access to a diverse array of transformations, including the formation of C-C and C-heteroatom bonds, their potential as energy-transfer reactive groups has remained unexplored. Yet, this potential holds the key to generating elusive polyborylated biradical species, which can be captured by olefins, thereby leading to the construction of new highly-borylated scaffolds. Herein, we report a designed energy-transfer strategy for photosensitized [2+2]-cycloadditions of poly-borylated alkenes with various olefins enabling the regioselective synthesis of diverse poly-borylated cyclobutane motifs, including the 1,1-di-, 1,1,2-tri-, and 1,1,2,2-tetra-borylated cyclobutanes. In fact, these compounds belong to a family that presently lacks efficient synthetic pathways. Interestingly, when α-methylstyrene was used, the reaction involves an interesting 1,5-hydrogen atom transfer (HAT). Mechanistic deuterium-labeling studies have provided insight into the outcome of 1,5-hydrogen atom transfer process. In addition, the polyborylated cyclobutanes are then demonstrated to be useful in selective oxidation processes resulting in the formation of cyclobutanones and γ-lactones.

摘要

虽然多硼化烯烃作为现代有机合成中极具价值的试剂正受到越来越多的关注,能够高效实现包括碳 - 碳键和碳 - 杂原子键形成在内的多种转化反应,但它们作为能量转移反应基团的潜力尚未得到探索。然而,这种潜力是生成难以捉摸的多硼化双自由基物种的关键,这些物种可被烯烃捕获,从而导致构建新的高度硼化骨架。在此,我们报告了一种设计的能量转移策略,用于多硼化烯烃与各种烯烃的光敏[2 + 2]环加成反应,能够区域选择性地合成多种多硼化环丁烷结构单元,包括1,1 - 二硼化、1,1,2 - 三硼化和1,1,2,2 - 四硼化环丁烷。事实上,这些化合物属于目前缺乏有效合成途径的一类化合物。有趣的是,当使用α - 甲基苯乙烯时,反应涉及一个有趣的1,5 - 氢原子转移(HAT)过程。机理氘标记研究为1,5 - 氢原子转移过程的结果提供了深入见解。此外,多硼化环丁烷随后被证明可用于选择性氧化过程,从而生成环丁酮和γ - 内酯。

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