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 ([NPtBu(pyrr)2], where tBu = C(CH3)3; pyrr = pyrrolidinyl = N(C4H8)), are systematically investigated computationally and experimentally to elucidate the nature of actinide–ligand (An–L) covalency across the An3+/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 Nim 2p orbitals with increasing atomic number and oxidation state, becoming particularly pronounced in the ligand-dominant π-bonding orbitals of An4+ and An5+. In contrast to the An3+ species, the enhanced An 5fπ contributions in the higher-valent counterparts drive the increase in An–Nim covalency for later An, thereby inverting the covalency trend to U < Np < Pu. Redistribution of electron density towards the An and Nim atomic basins due to the growing energy-matching assisted covalency correlates with higher pKa values and increased Nim–H bond dissociation free energies in protonated An4+ complexes. Electron density at Nim in An4+ shows a linear correlation with the pKa 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 An5+ species.

Graphical abstract: An–imidophosphorane (An = U–Pu) bond covalency and proton-coupled electron transfer thermodynamics driven by orbital energy matching

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Article information

Article type
Paper
Submitted
26 Jan 2026
Accepted
12 Feb 2026
First published
12 Feb 2026

Phys. Chem. Chem. Phys., 2026, Advance Article

An–imidophosphorane (An = U–Pu) bond covalency and proton-coupled electron transfer thermodynamics driven by orbital energy matching

C. M. Studvick, S. Dey, K. S. Engle, J. E. Niklas, J. W. Sprosty, H. S. La Pierre and I. A. Popov, Phys. Chem. Chem. Phys., 2026, Advance Article , DOI: 10.1039/D6CP00281A

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