Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, United States.
J Am Chem Soc. 2020 Jun 17;142(24):10571-10591. doi: 10.1021/jacs.0c04074. Epub 2020 Jun 5.
The ability to differentiate between highly similar C-H bonds in a given molecule remains a fundamental challenge in organic chemistry. In particular, the lack of sufficient steric and electronic differences between C-H bonds located distal to functional groups has prevented the development of site-selective catalysts with broad scope. An emerging approach to circumvent this obstacle is to utilize the between a target C-H bond and a coordinating functional group, along with the of the cyclic transition state in directed C-H activation, as core molecular recognition parameters to differentiate between multiple C-H bonds. In this Perspective, we discuss the advent and recent advances of this concept. We cover a wide range of transition-metal-catalyzed, template-directed remote C-H activation reactions of alcohols, carboxylic acids, sulfonates, phosphonates, and amines. Additionally, we review eminent examples which take advantage of non-covalent interactions to achieve regiocontrol. Continued advancement of this distance- and geometry-based differentiation approach for regioselective remote C-H functionalization reactions may lead to the ultimate realization of molecular editing: the freedom to modify organic molecules at any site, in any order.
在给定的分子中区分高度相似的 C-H 键仍然是有机化学中的一个基本挑战。特别是,由于远离官能团的 C-H 键之间缺乏足够的空间和电子差异,因此无法开发出具有广泛应用范围的选择性催化剂。一种新兴的方法是利用目标 C-H 键与配位官能团之间的相互作用,以及定向 C-H 活化中环状过渡态的稳定性,作为区分多个 C-H 键的核心分子识别参数。在本观点中,我们讨论了这一概念的出现和最新进展。我们涵盖了广泛的过渡金属催化、模板导向的醇、羧酸、磺酸酯、膦酸酯和胺的远程 C-H 活化反应。此外,我们还回顾了利用非共价相互作用实现区域控制的突出例子。这种基于距离和几何形状的区分方法在区域选择性远程 C-H 官能化反应中的进一步发展,可能导致分子编辑的最终实现:在任何位置、以任何顺序自由修饰有机分子。