Gu Huoliang, Sun Xiong, Wang Yong, Wu Haihong, Wu Peng
Shanghai Key Laboratory of Green Chemistry and Chemical Processes, School of Chemistry and Molecular Engineering, East China Normal University North Zhongshan Rd. 3663 Shanghai 200062 China
RSC Adv. 2018 Jan 8;8(4):1737-1743. doi: 10.1039/c7ra12498h. eCollection 2018 Jan 5.
A series of novel heterogeneous gold(i) catalysts were synthesized by immobilizing gold(i) complexes on ordered mesoporous polymer FDU-15 and characterized by XRD, N adsorption-desorption, FT-IR, TEM, EDS, The catalytic activities of these catalysts were evaluated by the amination reactions of allylic alcohols. Among the catalysts investigated, FDU-(-CFPh)PAuCl (3d) was identified as the most efficient catalyst. Compared to the homogeneous catalyst, the enhanced catalytic activity of the heterogeneous gold(i) catalyst is closely related to the mesoporous structure of FDU-15. The catalytic system was suitable for a broad range of substrates and can be easily recovered and recycled at least twelve times without significant loss of catalytic activity. In addition, the catalytic performance of 3d was further examined for intramolecular cyclization for the synthesis of heterocyclic compounds.
通过将金(I)配合物固定在有序介孔聚合物FDU-15上合成了一系列新型多相金(I)催化剂,并通过XRD、N吸附-脱附、FT-IR、TEM、EDS对其进行了表征。通过烯丙醇的胺化反应评估了这些催化剂的催化活性。在所研究的催化剂中,FDU-(-CFPh)PAuCl(3d)被确定为最有效的催化剂。与均相催化剂相比,多相金(I)催化剂催化活性的提高与FDU-15的介孔结构密切相关。该催化体系适用于广泛的底物,并且可以很容易地回收和循环使用至少十二次而催化活性没有明显损失。此外,还进一步研究了3d用于分子内环化合成杂环化合物的催化性能。