Joy Jesly, Demina T D, Durgi Amruta Kush, Vijayan Ajesh
Department of Chemistry, Christ University Bangalore India 560029
RSC Adv. 2025 Apr 8;15(14):11065-11084. doi: 10.1039/d5ra01203a. eCollection 2025 Apr 4.
Transition metal-mediated C-H activation is a significant synthetic methodology, with palladium-catalysed C-H activation emerging as a powerful tool in organic synthesis. This review summarises the advances made by palladium-catalyzed C-H functionalisation reactions on the position of 2-phenyl pyridine over the last two decades. The position of 2-phenyl pyridine has been identified as a prime target for C-H activation due to its unique electronic and steric properties. This mild and selective transformation has enormous applications in the chemical field, such as drug discovery, natural products, agrochemical, and pharmaceutical industries. These highly regioselective, chemo-selective, eco-friendly reactions exhibit a wide substrate scope. This review accounts for the development of various palladium-catalyzed C-H functionalisation reactions of 2-phenyl pyridine.
过渡金属介导的C-H活化是一种重要的合成方法,钯催化的C-H活化已成为有机合成中的一种强大工具。本综述总结了过去二十年来钯催化的2-苯基吡啶在特定位置的C-H官能化反应所取得的进展。由于其独特的电子和空间性质,2-苯基吡啶的特定位置已被确定为C-H活化的主要目标。这种温和且选择性的转化在化学领域有着广泛的应用,如药物发现、天然产物、农用化学品和制药行业。这些高度区域选择性、化学选择性、环境友好的反应具有广泛的底物范围。本综述阐述了2-苯基吡啶各种钯催化的C-H官能化反应的发展情况。