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Toward New Organometallic Architectures: Synthesis of Carbene-Centered Rhodium and Palladium Bisphosphine Complexes. Stability and Reactivity of [PCBImPRh(L)][PF6] Pincers

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Figshare2016-02-12 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Toward_New_Organometallic_Architectures_Synthesis_of_Carbene_Centered_Rhodium_and_Palladium_Bisphosphine_Complexes_Stability_and_Reactivity_of_PC_sup_BIm_sup_PRh_L_PF_sub_6_sub_Pincers/2125618
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In this article, we report the synthesis of a tridentate carbene-centered bisphosphine ligand precursor and its complexes. The developed four-step synthetic strategy of a new PCBImP pincer ligand represents the derivatization of benzimidazole in the first and third positions by (diphenylphosphoryl)­methylene synthone, followed by phosphine deprotection and subsequent insertion of a noncoordinating anion. The obtained ligand precursor undergoes complexation, with PdCl2 and [μ-OCH3Rh­(COD)]2 smoothly forming the target organometallics [PCBImPPdCl]­[PF6] and [PCBImPRh­(L)]­[PF6] under mild hydrogenation conditions. A more detailed study of the rhodium complexes [PCBImPRh­(L)]­[PF6] reveals significant thermal stability of the PCBImPRh moiety in the solid state as well as in solution. The chemical behavior of 1,3-bis­(diphenylphosphinomethylene)­benzimidazol-2-ylrhodium acetonitrile hexafluorophosphate has been screened under decarbonylation, hydrogenation, and hydroboration reaction conditions. Thus, the PCBImPRhI complex is a sufficiently stable compound, with the potential to be applied in catalysis.
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2016-02-12
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