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Direct and indirect CO2 hydrogenation catalyzed by Ir (III), Rh (III), Ru (II), and Os (II) half-sandwich complexes to generate formates and N, N-diethylformamide Journal of CO2 Utilization, 2020 Item

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https://figshare.com/articles/dataset/Direct_and_indirect_CO2_hydrogenation_catalyzed_by_Ir_III_Rh_III_Ru_II_and_Os_II_half-sandwich_complexes_to_generate_formates_and_N_N-diethylformamide_Journal_of_CO2_Utilization_2020_Item/12054930
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As a contribution to the valorization of carbon dioxide, new N,O-coordinated Ir(III), Rh(III), Ru(II), and Os(II)half-sandwich complexes have been designed, synthesized, and applied as homogeneous pre-catalysts in theexperiments for direct and indirect CO2 hydrogenation under basic conditions. The complexes contain a N,OdonorSchiff base ligand derived from N-(β-naphthyl)-2-oxy-1-naphthaldimine that assisted by partitioning thecatalysts to the organic layer in biphasic mixtures, enabling catalyst separation. In the presence of DBU, the Os(II) half-sandwich complex N,O-Os(II) (C2) gave a TON of 889 for [DBUH][HCO2] formation under a partialpressure of 60 bar CO2/H2 at 120 °C over 48 h, assisted by heterogeneous side reactions. Complexes N,O-Rh(III)(C3) and N,O-Ir(III) (C4) exhibited great efficiency in the homogeneous hydrogenation of carbon dioxide toafford formate and N,N-diethylformamide in the presence of DBU and diethylamine, respectively. Group 9 halfsandwichcomplexes eminently qualify as useful in the direct and indirect hydrogenation of CO2 to afford reactionintermediates that can be used to make carbon-neutral fuel.
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2020-05-05
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