August 2024

Journal

Transient Covalency in Molten Uranium(III) Chloride

By:
Ivanov, Aleksandr ; Maltsev, Dmitry ; Zhang, Yuanpeng ; Neuefeind, Joerg C; Ray, Debmalya ; Halstenberg, Phillip W; Bryantsev, Vyacheslav ; Dai, Sheng ; Roy, Santanu ; Driscoll, Darren; Reinhart, Benjamin; Agca, Can; Emerson, Matthew; Margulis, Claudio; Aziziha, Mina; Schorne-Pinto, Juliano; Besmann, Theodore
Journal Name:
Journal of the American Chemical Society
Page Number:
21220-21224
Volume:
146
Issue Number:
31
Publication Date:
August 26, 2024
View DOI Listing:
https://doi.org/10.1021/jacs.4c05765

Abstract

Uranium is arguably the most essential element in the actinide series, serving as a crucial component of nuclear fuels. While U is recognized for engaging the 5f orbitals in chemical bonds under normal conditions, little is known about its coordination chemistry and the nature of bonding interactions at extreme conditions of high temperature. Here we report experimental and computational evidence for the shrinkage of the average U–ligand distance in UCl3 upon the solid-to-molten phase transition, leading to the formation of a significant fraction of short, transient U–Cl bonds with the enhanced involvement of U 5f valence orbitals. These findings reveal that extreme temperatures create an unusual heterogeneous bonding environment around U(III) with distinct inner- and outer-coordination subshells.