Debnath Chhanda, Bhoi Saswat Ranjan, Gandhi Shikha
Department of Chemical Sciences, Indian Institute of Science Education and Research Berhampur, 760010, India.
Org Biomol Chem. 2024 Jun 12;22(23):4613-4624. doi: 10.1039/d4ob00525b.
The cooperation of two distinct catalytic cycles to activate different reactive centers leading to a chemical transformation has been classified as synergistic catalysis. The synergistic combination of NHC with palladium catalysis has emerged as a powerful strategy in the last few years. Merging the ability of NHCs to inverse the polarity of a functional group with the unique reactivity of palladium enables transformations that cannot be accomplished by either of these catalysts alone. Despite the associated challenges, such as quenching of catalysts, reactivity mismatch ., significant development has been achieved in the field of NHC/Pd synergistic catalysis. The recent incorporation of photoredox catalysis with NHC/Pd synergistic catalysis has further advanced this area. This review highlights the developments made in the area of NHC/Pd synergistic catalysis.
两个不同的催化循环协同作用以激活不同的反应中心从而导致化学转化,这种情况被归类为协同催化。在过去几年中,氮杂环卡宾(NHC)与钯催化的协同组合已成为一种强大的策略。将氮杂环卡宾使官能团极性反转的能力与钯独特的反应活性相结合,能够实现单独使用这两种催化剂中的任何一种都无法完成的转化。尽管存在诸如催化剂猝灭、反应活性不匹配等相关挑战,但在氮杂环卡宾/钯协同催化领域已取得了重大进展。最近将光氧化还原催化与氮杂环卡宾/钯协同催化相结合,进一步推动了该领域的发展。本综述重点介绍了氮杂环卡宾/钯协同催化领域所取得的进展。