Muto Kei, Hatakeyama Taito, Yamaguchi Junichiro, Itami Kenichiro
Institute of Transformative Bio-Molecules (WPI-ITbM) and Graduate School of Science , Nagoya University , Chikusa , Nagoya 464-8602 , Japan . Email:
Central Research Laboratory Technology and Development Division , Kanto Chemicals Co. Inc. , Saitama 340-0003 , Japan.
Chem Sci. 2015 Dec 1;6(12):6792-6798. doi: 10.1039/c5sc02942b. Epub 2015 Sep 8.
The first nickel-catalyzed C-H arylations and alkenylations of imidazoles with phenol and enol derivatives are described. Under the influence of Ni(OTf)/dcype/KPO (dcype: 1,2-bis(dicyclohexylphosphino)ethane) in -amyl alcohol, imidazoles can undergo C-H arylation with phenol derivatives. The C-H arylation of imidazoles with chloroarenes as well as that of thiazoles and oxazoles with phenol derivatives can also be achieved with this catalytic system. By changing the ligand to dcypt (3,4-bis(dicyclohexylphosphino)thiophene), enol derivatives could also be employed as coupling partners achieving the C-H alkenylation of imidazoles as well as thiazoles and oxazoles. Thus, a range of C2-arylated and alkenylated azoles can be synthesized using this newly developed nickel-based catalytic system. The key to the success of the C-H coupling of imidazoles is the use of a tertiary alcohol as solvent. This also allows the use of an air-stable nickel(ii) salt as the catalyst precursor.
本文描述了首例镍催化咪唑与酚类及烯醇衍生物的C-H芳基化和烯基化反应。在Ni(OTf)/dcype/KPO(dcype:1,2-双(二环己基膦基)乙烷)于异戊醇的作用下,咪唑能与酚类衍生物发生C-H芳基化反应。该催化体系也能实现咪唑与氯代芳烃的C-H芳基化反应,以及噻唑和恶唑与酚类衍生物的C-H芳基化反应。通过将配体换为dcypt(3,4-双(二环己基膦基)噻吩),烯醇衍生物也可作为偶联伙伴,实现咪唑以及噻唑和恶唑的C-H烯基化反应。因此,利用这种新开发的镍基催化体系可以合成一系列C2-芳基化和烯基化的唑类化合物。咪唑C-H偶联反应成功的关键在于使用叔醇作为溶剂。这也使得可以使用对空气稳定的镍(II)盐作为催化剂前体。