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Updated: May 15, 2025

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Water Serving as Cocatalyst for the Highly Efficient Homogeneously Catalyzed Conversion of N2O/H2 Mixtures with
Sven Thomas Nappen1, Juan José Gamboa-Carballo1,2, Esther Tschanen1
1Department of Chemistry and Applied Biosciences, ETH Zürich, Vladimir-Prelog-Weg 1, Zürich, CH-8093, Switzerland.
Abstract:
Nitrous oxide (N2O) is a valuable oxygen/nitrogen transfer reagent but reactions with N2O are challenging due to its inertness. Consequently, it accumulates in the atmosphere, and because it is both an ozone-depleting reagent and potent green-house gas, effective mitigation methods become important. This study presents rhodium(I) amido bis(olefin) N-heterocyclic carbene complexes [Rh(trop2N)(NHC)] as robust homogeneous catalysts for the direct hydrogenation of N2O. Kinetic experiments and DFT calculations show that increasing π-acidity of the NHC and the presence of water significantly enhance the catalytic efficiency. The rhodium-amido bond facilitates cooperative H2-cleavage and oxygen atom transfer from N2O. The catalyst is regenerated with the loss of water from the hydroxide intermediate [Rh(OH)(trop2NH)(NHC)], which forms a dimeric complex with a central bridging hydrated hydroxide ligand [H3O2]-. Water facilitates dinitrogen (N2) loss from an intermediate containing an oxy-diazene ligand [H─N═N─O]-. The optimized catalyst achieves a TON > 230 000 and TOF > 1300 h-1.
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