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Abstract One of the long standing debates in actinide chemistry is the level of localization and participation of the actinide 5 f valence orbitals in covalent bonds across the actinide series. Here we illuminate the role of the 5 f valence orbitals of uranium, neptunium and plutonium in chemical bonding using advanced spectroscopies: actinide M 4,5 HR-XANES and 3 d 4 f RIXS. Results reveal that the 5 f orbitals are active in the chemical bonding for uranium and neptunium, shown by significant variations in the level of their localization evidenced in the spectra. In contrast, the 5 f orbitals of plutonium appear localized and surprisingly insensitive to different bonding environments. We envisage that this report of using relative energy differences between the 5 f δ/φ and 5 f π*/5 f σ* orbitals as a qualitative measure of overlap-driven actinyl bond covalency will spark activity, and extend to numerous applications of RIXS and HR-XANES to gain new insights into the electronic structures of the actinide elements.
Vitova et al. (Thu,) studied this question.