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Updated: Feb 28, 2026

Palladium N-Heterocyclic Carbene Complexes: Synthesis from Benzimidazolium Salts and Catalytic Activity in Carbon-carbon Bond-forming Reactions
Published on: July 30, 2017
Mononuclear, Homo- and Heterodinuclear Nickel(I) and Palladium(I) Carbonyl Complexes
Tim Bruckhoff1, Felix Braun1, Vincenz J Kohler1
1Anorganisch-Chemisches Institut, Universität Heidelberg, Im Neuenheimer Feld 276, 69120 Heidelberg, Germany.
Abstract:
Steric bulk at the phosphine donors and the identity of the metal center significantly control the stability, structure, nuclearity, and electronic properties of PNP-stabilized monovalent group 10 carbonyl complexes. Sterically undemanding P-substituents favor dinuclear carbonyl-bridged species, while increased bulk (iPr, tBu) stabilizes mononuclear adducts. The T-shaped nickel(I) complex [(tBuPNP)NiI] (3tBu-Ni) has been synthesized, fully characterized and subsequently compared to its iPr-substituted congener [(iPrPNP)NiI] (3iPr-Ni). Both Ni(I) complexes 3tBu-Ni and 3iPr-Ni were subjected to 1-5 bar of CO pressure giving the mononuclear monocarbonyl complexes [(tBuPNP)NiI(CO)] (4tBu-Ni) and [(iPrPNP)NiI(CO)] (4iPr-Ni). From the reaction of CO (5 bar) with the previously reported dinuclear complex [(EtPNP)Ni]2 (5Et-Ni) a dinuclear compound [{(EtPNP)Ni}2(μ2-CO)2] (6) was obtained in which two carbonyl ligands are semibridging. Upon applying a CO atmosphere to a solution of the [(iPrPNP)Pd]2 dimer (5iPr-Pd), initially the mononuclear [(iPrPNP)PdI(CO)] complex (4iPr-Pd) is thought to be formed, which dimerized subsequently to give [{(iPrPNP)PdI}2(μ2-CO)] (7). The molecular structure of the dinuclear complex 7 was established by single-crystal X-ray diffraction which confirmed its dinuclear structure with a single semibridging carbonyl ligand. Finally, reaction of the heterodinuclear Ni-Pd complex [(EtPNP)Ni-Pd(EtPNP)] with CO gave a dinuclear Ni(0)/Pd(II)-complex 8 demonstrating favored heterolytic bond cleavage in the presence of π acidic ligands.
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