Department of Chemistry, Indian Institute of Technology Delhi, New Delhi-110016, India.
Dalton Trans. 2013 Apr 21;42(15):5200-23. doi: 10.1039/c2dt32432f. Epub 2013 Jan 23.
Suzuki-Miyaura C-C cross coupling (SMC), an important synthetic strategy for many organic molecules, has several advantages such as mild reaction conditions, high tolerance toward various functional groups and ease in isolation of the product. Palladium(II) ligated with phosphines (particularly bulky and electron-rich) and N-heterocyclic carbenes (NHCs) has been found to be efficient in the catalysis of SMC. The drawback with many of these catalysts is their air/moisture sensitivity. Since 2000, palladium(II) complexes of organosulphur and related ligands have emerged as viable alternatives to palladium-phosphine/carbene complexes as they have sufficient thermal stability, air and moisture insensitivity. Moreover synthesis of complexes of such ligands is easy. In this perspective Suzuki-Miyaura C-C coupling reactions catalyzed with palladium(II)-complexes of organosulphur ligands have been reviewed. Catalysis of SMC with palladium(II) complexes of organoselenium and tellurium ligands, studied much less in comparison to those of organosulphur ligands, is also included.
铃木-宫浦 C-C 交叉偶联反应(SMC)是许多有机分子的重要合成策略,具有反应条件温和、对各种官能团的容忍度高以及产物易于分离等优点。钯(II)与膦(特别是大位阻和富电子的膦)和 N-杂环卡宾(NHCs)配位的化合物已被证明在 SMC 催化中具有高效性。然而,许多这类催化剂的一个缺点是它们对空气/水分敏感。自 2000 年以来,有机硫及其相关配体的钯(II)配合物已成为钯-膦/卡宾配合物的可行替代品,因为它们具有足够的热稳定性、对空气和水分不敏感。此外,这类配体的配合物合成也相对容易。在本综述中,我们讨论了钯(II)-有机硫配体配合物催化的铃木-宫浦 C-C 偶联反应。与有机硫配体相比,研究较少的钯(II)-有机硒和碲配体的 SMC 催化也包括在内。