We describe an example of a two-electron metal- and ligand-based reduction of Me3SiN3using uranium(iv) complexes with varying steric properties. Reaction of (C5Me5)2U(CH3)[P(SiMe3)(Ph)] with Me3SiN3produces the imidophosphorane complex, (C5Me5)2U(CH3)[N-P(SiMe3)2(Ph)] through oxidation of phosphorus. However, a similar reaction with a more sterically encumbering phosphido ligand, (C5Me5)2U(CH3)[P(SiMe3)(Mes)] forms the U(iv) complex, (C5Me5)2U[κ2-(N,N)-N(SiMe3)P(Mes)N(SiMe3)]. In probing the mechanism of this reaction, a U(vi) bis(imido) complex, (C5Me5)2U(-NSiMe3){-N[P(SiMe3)(Mes)]} was isolated. DFT calculations show an intramolecular reductive cycloaddition reaction leads to the formation of the U(iv) bis(amido)phosphane from the U(vi) bis(imido) complex. This is a rare example of the isolation of a reaction intermediate infelement chemistry.
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CITATION STYLE
Ward, R. J., Rungthanaphatsophon, P., Rosal, I. del, Kelley, S. P., Maron, L., & Walensky, J. R. (2020). Divergent uranium-versusphosphorus-based reduction of Me3SiN3with steric modification of phosphido ligands. Chemical Science, 11(22), 5830–5835. https://doi.org/10.1039/d0sc02261f