Department of Chemistry, FRQNT Centre for Green Chemistry and Catalysis, McGill University, 801 Sherbrooke St. W., Montreal, Quebec H3A 0B8, Canada.
Chem Soc Rev. 2021 Oct 4;50(19):10955-10982. doi: 10.1039/d1cs00380a.
The progress of drug discovery and development is paced by milestones reached in organic synthesis. In the last decade, the advent of late-stage functionalization (LSF) reactions has represented a valuable breakthrough. Recent literature has defined these reactions as the chemoselective modification of complex molecules by means of C-H functionalization or the manipulation of endogenous functional groups. Traditionally, these diversifications have been accomplished by organometallic means. However, the presence of metals carries disadvantages related to their cost, environmental hazard and health risks. Fundamentally, green chemistry directives can help minimize such hazards through the development of metal-free LSF methodologies. In this review, we expand the current discussion on metal-free LSF reactions by providing an overview of C(sp)-H, and C(sp)-H functionalizations, as well as the utilization of heteroatom-containing functional groups as chemical handles. Selected topics such as metal-free cross-dehydrogenative coupling (CDC) reactions, organocatalysis, electrochemistry and photochemistry are also discussed. By writing the first review on metal-free LSF methodologies, we aim to highlight current advances in the field with examples that reveal specific challenges and solutions, as well as future research opportunities.
药物发现和开发的进展取决于有机合成中达到的里程碑。在过去的十年中,晚期功能化(LSF)反应的出现代表了一个有价值的突破。最近的文献将这些反应定义为通过 C-H 功能化或内源性官能团的操作对复杂分子进行化学选择性修饰。传统上,这些多样化是通过有机金属手段来完成的。然而,金属的存在存在与其成本、环境危害和健康风险相关的缺点。从根本上说,通过开发无金属 LSF 方法,绿色化学指令可以帮助最小化这些危害。在这篇综述中,我们通过提供 C(sp)-H 和 C(sp)-H 功能化的概述以及含杂原子官能团作为化学接头的利用,扩展了无金属 LSF 反应的当前讨论。还讨论了无金属交叉脱氢偶联(CDC)反应、有机催化、电化学和光化学等选定主题。通过撰写第一篇关于无金属 LSF 方法的综述,我们旨在突出该领域的当前进展,并通过揭示具体挑战和解决方案以及未来研究机会的示例来突出这一点。