Mondal Bhaskar, Saha Tarak Nath, Naskar Rajat, Maity Ramananda
Department of Chemistry, University of Calcutta, Kolkata 700009, West Bengal, India.
Inorg Chem. 2024 Nov 25;63(47):22512-22522. doi: 10.1021/acs.inorgchem.4c03801. Epub 2024 Nov 13.
The amount of cooperation between the metal centers by tailored ligand design is vital to achieve the multimetallic catalytic benefits. Herein, a bimetallic Pd NHC/pyridine complex is synthesized utilizing a novel extended -symmetric bis-NHC ligand featuring 1,4-disubstituted ethynylbenzene as a central ligand platform. The complex was further employed for the preparation of a dinuclear complex possessing a combination of NHC and PPh ligands. Dinuclear complexes have also been synthesized using a 1,4-di(NHC)-substituted parent benzene ring platform with no acetylene linker units. The donor strengths of both bis-NHC ligands were compared with the help of C and P chemical shift values as probes. All of the bimetallic complexes were tested as precatalysts in the intermolecular α-arylation of 1-methyl-2-oxindole and Sonogashira coupling reactions. The dinuclear Pd complexes with the ethynylbenzene-bridged bis-NHC ligand showed impressive catalytic outcomes that outweigh the catalytic outcomes obtained with dinuclear bis-NHC complexes possessing no such acetylene linkers. The corresponding mononuclear Pd complexes were synthesized for comparison purposes utilizing both types of central ligand platforms. The dinuclear complexes appeared more active than the corresponding mononuclear complexes in catalysis. Furthermore, higher cooperative index values were obtained in catalysis using the dinuclear Pd complexes with an acetylene-bridged bis-NHC ligand compared to those with no such acetylene linkers.
通过定制配体设计实现金属中心之间的合作量对于获得多金属催化益处至关重要。在此,利用一种以1,4-二取代乙炔基苯为中心配体平台的新型扩展对称双NHC配体合成了一种双金属Pd NHC/吡啶配合物。该配合物进一步用于制备具有NHC和PPh配体组合的双核配合物。还使用没有乙炔连接单元的1,4-二(NHC)取代的母体苯环平台合成了双核配合物。借助C和P化学位移值作为探针比较了两种双NHC配体的给电子强度。所有双金属配合物都作为预催化剂用于1-甲基-2-氧代吲哚的分子间α-芳基化反应和Sonogashira偶联反应。具有乙炔基苯桥连双NHC配体的双核Pd配合物显示出令人印象深刻的催化结果,超过了没有这种乙炔连接基的双核双NHC配合物所获得的催化结果。为了进行比较,利用两种类型的中心配体平台合成了相应的单核Pd配合物。在催化中,双核配合物比相应的单核配合物表现出更高的活性。此外,与没有这种乙炔连接基的双核Pd配合物相比,使用具有乙炔桥连双NHC配体的双核Pd配合物在催化中获得了更高的协同指数值。