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gem-Dialkyl Effect in Diphosphine Ligands: Synthesis, Coordination Behavior, and Application in Pd-Catalyzed Hydroformylation

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Figshare2019-12-03 更新2026-04-29 收录
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https://figshare.com/articles/dataset/_i_gem_i_-Dialkyl_Effect_in_Diphosphine_Ligands_Synthesis_Coordination_Behavior_and_Application_in_Pd-Catalyzed_Hydroformylation/11374320
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A series of palladium complexes with C3-bridged bidentate bis­(diphenylphosphino)­propane ligands with substituents of varying steric bulk at the central carbon have been synthesized. The size of the gem-dialkyl substituents affects the C–C–C bond angles within the ligands and consequently the P–M–P ligand bite angles. A combination of solid-state X-ray diffraction (XRD) and density functional theory (DFT) studies has shown that an increase in substituent size results in a distortion of the 6-membered metal–ligand chair conformation toward a boat conformation, to avoid bond angle strain. The influence of the gem-dialkyl effect on the catalytic performance of the complexes in palladium-catalyzed hydroformylation of 1-octene has been investigated. While hydroformylation activity to nonanal decreases with increasing size of the gem-dialkyl substituents, a change in chemoselectivity toward nonanol via reductive hydroformylation is observed.
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2019-12-03
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