Qin Yangzhong, Martindale Benjamin C M, Sun Rui, Rieth Adam J, Nocera Daniel G
Department of Chemistry and Chemical Biology, Harvard University 12 Oxford Street Cambridge Massachusetts 02138 USA
Chem Sci. 2020 Jun 25;11(28):7456-7461. doi: 10.1039/d0sc02131h.
Nickel-catalysed aryl amination and etherification are driven with sunlight using a surface-modified carbon nitride to extend the absorption of the photocatalyst into a wide range of the visible region. In contrast to traditional homogeneous photochemical methodologies, the lower cost and higher recyclability of the metal-free photocatalyst, along with the use of readily available sunlight, provides an efficient and sustainable approach to promote nickel-catalysed cross-couplings.
通过使用表面改性的氮化碳,以阳光驱动镍催化的芳基胺化和醚化反应,从而将光催化剂的吸收范围扩展到可见光区域的较宽范围。与传统的均相光化学方法相比,这种无金属光催化剂成本更低、可回收性更高,再加上利用容易获得的阳光,为促进镍催化的交叉偶联反应提供了一种高效且可持续的方法。