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通过基于 D 形联苯模板的组装实现芳环的远程 para-C-H 官能化。

Remote para-C-H Functionalization of Arenes by a D-Shaped Biphenyl Template-Based Assembly.

机构信息

Department of Chemistry, Indian Institute of Technology Bombay , Powai, Mumbai 400076, India.

出版信息

J Am Chem Soc. 2015 Sep 23;137(37):11888-91. doi: 10.1021/jacs.5b06793. Epub 2015 Sep 11.

Abstract

Site-selective C-H functionalization has emerged as an efficient tool in simplifying the synthesis of complex molecules. Most often, directing group (DG)-assisted metallacycle formation serves as an efficient strategy to ensure promising regioselectivity. A wide variety of ortho- and meta-C-H functionalizations stand as examples in this regard. Yet despite this significant progress, DG-assisted selective para-C-H functionalization in arenes has remained unexplored, mainly because it involves the formation of a geometrically constrained metallacyclic transition state. Here we report an easily recyclable, novel Si-containing biphenyl-based template that directs efficient functionalization of the distal p-C-H bond of toluene by forming a D-shaped assembly. This DG allows the required flexibility to support the formation of an oversized pre-transition state. By overcoming electronic and steric bias, para-olefination and acetoxylation were successfully performed while undermining o- and m-C-H activation. The applicability of this D-shaped biphenyl template-based strategy is demonstrated by synthesizing various complex molecules.

摘要

位点选择性 C-H 功能化已成为简化复杂分子合成的有效工具。通常,导向基团 (DG)-辅助金属环化形成是确保有前途的区域选择性的有效策略。在这方面,有各种各样的邻位和间位 C-H 功能化的例子。然而,尽管取得了这一重大进展,但芳烃中 DG 辅助的选择性对位 C-H 功能化仍未得到探索,主要是因为它涉及到形成几何受限的金属环过渡态。在这里,我们报告了一种易于回收的新型含硅联苯基模板,通过形成 D 形组装来指导甲苯的远端 p-C-H 键的有效功能化。这种 DG 允许形成过大的预过渡态所需的灵活性。通过克服电子和空间位阻的影响,成功地进行了对位烯烃化和乙酰氧基化,同时破坏了 o-和 m-C-H 的活化。通过合成各种复杂分子,证明了这种基于 D 形联苯模板的策略的适用性。

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