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Palladium(II) Complexes Bearing an Indazole-Derived N‑Heterocyclic Carbene and Phosphine Coligands as Catalysts for the Sonogashira Coupling and the Hydroamination of Alkynes

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Figshare2016-01-26 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Palladium_II_Complexes_Bearing_an_Indazole_Derived_N_Heterocyclic_Carbene_and_Phosphine_Coligands_as_Catalysts_for_the_Sonogashira_Coupling_and_the_Hydroamination_of_Alkynes/2067573
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Indazolin-3-ylidenes (indy) are among the most strongly donating N-heterocyclic carbenes, but the structural diversity of their complexes is still limited. Two dimeric palladium­(II) complexes, [PdBr2(indy-5)]2 (2a) and [PdBr2(indy-6)]2 (2b) (indy-5 = 2,3-dihydro-1H-pyrazolo­[1,2-a]­indazolin-3-ylidene, indy-6 = 6,7,8,9-tetrahydropyridazino­[1,2-a]­indazolin-3-ylidene], bearing indazolin-3-ylidene ligands with different sizes of the fused aliphatic ring can be obtained by silver carbene transfer. The reaction of these dimers with pyridine yielded trans-[PdBr2(indy)­(pyridine)] complexes (3a,b), while the poorly soluble monophosphine complexes cis-[PdBr2(indy)­(PPh3)] (4a,b) were obtained by reaction with triphenylphosphine. Ligand substitution of the latter with silver trifluoroacetate afforded cis-[Pd­(O2CCF3)2(indy)­(PPh3)] complexes (5a,b) with improved solubilities, allowing for their detailed characterizations. In the presence of sodium tetrafluoroborate, cationic bis­(phosphine) complexes trans-[PdBr­(PPh3)2]­[BF4] (6a,b) could be obtained. Similarly, cis-[PdBr­(dppe)]­[BF4] (7a,b) and cis-[PdBr­(dppp)]­[BF4] (8a,b) were obtained (dppe = bis­(diphenylphosphino)­ethane; dppp = bis­(diphenylphosphino)­propane) with the respective chelating diphosphines. A preliminary catalytic study revealed that the complexes incorporating monodentate phosphine ligands are good catalysts for the Sonogashira cross-coupling, while moderate to good yields were achieved with all complexes for the hydroamination of carbon–carbon triple bonds.
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2016-01-26
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