Department of Chemistry, University of Calcutta, 92-APC Road, Kolkata, 700009, India.
Institut für Anorganische und Analytische Chemie, Westfälische Wilhelms-Universität Münster, Corrensstraße 30, 48149, Münster, Germany.
Chemistry. 2023 Jul 11;29(39):e202300548. doi: 10.1002/chem.202300548. Epub 2023 May 30.
A new C -symmetric tris-imidazolium tribromide salt 3, featuring 1,3,5-substituted triethynylbenzene, was used for the preparation of a trinuclear Pd pyridine-enhanced precatalyst preparation stabilization and initiation-type (PEPPSI) complex by triple C2 deprotonation followed by the addition of PdCl . Trinuclear Pd complex possessing a combination of NHC and PPh ligands has also been synthesized. The corresponding mononuclear palladium(II) complexes have also been synthesized for the comparison purpose. All these complexes have been characterized by using NMR spectroscopy and ESI mass spectrometry. The molecular structure of the trinuclear palladium(II) complex bearing mixed carbene and pyridine donor ligands has been established by using single crystal XRD. All the palladium(II) complexes have been used as pre-catalysts, which gave good to excellent yields in intermolecular α-arylation of 1-methyl-2-oxindole and Sonogashira coupling reaction. Catalytic studies indicate an enhanced activity of the trinuclear Pd complex in comparison to the corresponding mononuclear Pd complex for both catalytic transformations. The better performance of the trinuclear complex has also been further supported by preliminary electrochemical measurements. A negative mercury poison test was observed for both the aforementioned catalyses and therefore, it is likely that these organic transformations proceed homogeneously.
一种新的 C-对称三咪唑三溴化物盐 3,具有 1,3,5-取代的三乙炔基苯,用于通过三重 C2 去质子化后加入 PdCl 来制备三核 Pd 吡啶增强前催化剂制备稳定化和引发型(PEPPSI)络合物。还合成了具有 NHC 和 PPh 配体组合的相应单核钯(II)配合物。为了比较目的,还合成了相应的单核钯(II)配合物。所有这些配合物都通过 NMR 光谱和 ESI 质谱进行了表征。通过单晶 XRD 确定了具有混合卡宾和吡啶供体配体的三核钯(II)配合物的分子结构。所有钯(II)配合物都用作前催化剂,在 1-甲基-2-氧代吲哚的分子间 α-芳基化和 Sonogashira 偶联反应中均获得了良好至优秀的产率。催化研究表明,与相应的单核 Pd 配合物相比,三核 Pd 配合物在这两种催化转化中具有更高的活性。三核配合物的更好性能也通过初步电化学测量得到了进一步支持。在上述两种催化中都观察到了汞的负毒测试,因此,这些有机转化很可能是均相进行的。