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非经典硼簇基亲电试剂促进的芳烃 C-H 硼化策略。

Arene C-H borylation strategy enabled by a non-classical boron cluster-based electrophile.

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, CA, 90095, USA.

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, CA, 92093, USA.

出版信息

Nat Commun. 2023 Mar 25;14(1):1671. doi: 10.1038/s41467-023-37258-6.

Abstract

Introducing a tri-coordinate boron-based functional group (e.g., boronic ester) into an unactivated C-H bond in the absence of directing groups is an ongoing challenge in synthetic chemistry. Despite previous developments in transition metal-catalyzed and -free approaches, C-H borylation of sterically hindered arenes remains a largely unsolved problem to date. Here, we report a synthetic strategy of a two-step, precious metal-free electrophilic C-H borylation of sterically hindered alkyl- and haloarenes to generate aryl boronic esters. The first step relies on electrophilic aromatic substitution (EAS) induced by cage-opening of Cs[closo-BH], forming a 6-Ar-nido-BH product containing a B-C bond, followed by a cage deconstruction of arylated decaboranes promoted by diols. The combination of these two steps allows for the preparation of aryl boronic esters that are hardly accessible by current direct C-H borylation approaches. This reaction does not require any precious metals, highly-engineered ligands, pre-functionalized boron reagents, or inert conditions. In addition, the unique properties of a non-classical boron cluster electrophile intermediate, BH, afford a regioselectivity with unique steric and electronic control without the undesirable side reactions.

摘要

在不存在导向基团的情况下,将三配位硼基官能团(例如硼酸酯)引入非活化的 C-H 键中是合成化学中的一个持续挑战。尽管在过渡金属催化和无金属催化方法方面已有先前的发展,但迄今为止,空间位阻芳基的 C-H 硼化仍然是一个基本未解决的问题。在这里,我们报告了一种两步、无贵金属的亲电 C-H 硼化空间位阻烷基和卤代芳烃的合成策略,可生成芳基硼酸酯。第一步依赖于笼开环诱导的亲电芳香取代(EAS),形成含有 B-C 键的 6-Ar-nido-BH 产物,然后通过二醇促进芳基化十硼烷的笼解构。这两步的结合允许制备当前直接 C-H 硼化方法难以获得的芳基硼酸酯。该反应不需要任何贵金属、高度工程化配体、预功能化硼试剂或惰性条件。此外,非经典硼簇亲电中间体 BH 的独特性质提供了独特的立体和电子控制的区域选择性,而没有不希望的副反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/218e/10039867/bfc7879831ae/41467_2023_37258_Fig1_HTML.jpg

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