DOE OSTI · 3020548
An–imidophosphorane (An = U–Pu) bond covalency and proton-coupled electron transfer thermodynamics driven by orbital energy matching
Abstract
A series of mid-actinide (An = U–Pu) tetrahomoleptic complexes supported by highly electron-donating imidophosphorane ligands, NPC ([NP t Bu(pyrr) 2 ] − , where t Bu = C(CH 3 ) 3 ; pyrr = pyrrolidinyl = N(C 4 H 8 )), are systematically investigated computationally and experimentally to elucidate the nature of actinide–ligand (An–L) covalency across the An 3+/4+/5+ oxidation states. Trends in An–L bonding and redox properties for these complexes, together with their protonated counterparts, are examined using orbital-, electron density-, and energy-decomposition-based methods. This integrated approach reveals progressively improved energy matching between α-spin An 5f and N im 2p orbitals with increasing atomic number and oxidation state, becoming particularly pronounced in the ligand-dominant π-bonding orbitals of An 4+ and An 5+ . In contrast to the An 3+ species, the enhanced An 5f π contributions in the higher-valent counterparts drive the increase in An–N im covalency for later An, thereby inverting the covalency trend to U < Np < Pu. Redistribution of electron density towards the An and N im atomic basins due to the growing energy-matching assisted covalency correlates with higher pKa values and increased N im –H bond dissociation free energies in protonated An 4+ complexes. Electron density at Nim in An 4+ shows a linear correlation with the p K a values calculated via the Bordwell equation. Calculations predict a cathodic shift of 0.84–1.00 V in the redox couples upon protonation, a trend validated when experimentally accessible. These findings demonstrate an increasing role of covalency driven by orbital energy matching from U to Pu in tuning the thermodynamic driving force for proton-coupled electron transfer in the An 5+ species.
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Studvick, Chad M. [University of Akron, OH (United States)] (ORCID:000000024249776X), Dey, Sourav [Washington State University, Pullman, WA (United States)], Engle, Kaitlyn S. [Georgia Institute of Technology, Atlanta, GA (United States)], Niklas, Julie E. [Georgia Institute of Technology, Atlanta, GA (United States)] (ORCID:0000000241323733), Sprosty, Jonah W. [University of Akron, OH (United States)], La Pierre, Henry S. [Georgia Institute of Technology, Atlanta, GA (United States); Pacific Northwest National Laboratory (PNNL), Richland, WA (United States)] (ORCID:0000000208950655), Popov, Ivan A. [Washington State University, Pullman, WA (United States)] (ORCID:0000000326633685). 2026-02-12. An–imidophosphorane (An = U–Pu) bond covalency and proton-coupled electron transfer thermodynamics driven by orbital energy matching. https://doi.org/10.1039/d6cp00281a
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