PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 19, 2026npj Materials Degradation0 citationsOpen Access

Speciation and radiation stability of Cr and Ln “Grey-Phases” within Cr-doped (Ln,U)O2 spent fuel model materials

DSDaniil ShirokiyABAndrey BukaemskiyMHMaximilian Henkes

Key Points

  • The study aims to understand the speciation of chromium and fission products in Cr-doped UO2 spent fuel.
  • Utilized HERFD-XANES spectroscopy to analyze speciation of Cr and Pr/Gd in compounds.
  • Performed swift heavy ion irradiations on PrCrO3 and GdCrO3 to assess radiation tolerance.
  • Conducted electron microscopy and synchrotron diffraction for structural analysis.
  • Identified Cr3+ and Pr3+/Gd3+ forming perovskite-type (Pr3+/Gd3+)Cr3+O3 phases.
  • Observed significant amorphization of compounds post-irradiation while retaining crystal structure.
  • Highlighted the importance of dopant chemistry on spent fuel behavior during irradiation.

Abstract

Abstract Cr-doped UO₂ fuels are increasingly adopted for their superior in-reactor performance compared to undoped UO₂, but their spent fuel behaviour, particularly potential Cr speciation and fission product reactivity, remains poorly understood. This investigation has used high energy resolution fluorescence detected X-ray absorption near edge structure (HERFD-XANES) spectroscopy to examine speciation of Cr and Pr/Gd within 200 ppm Cr-doped (U 4.4+ 0.7 Pr 3+ 0.3 )O 2-x and 200 ppm Cr-doped (U 4.4+ 0.7 Gd 3+ 0.3 )O 2-x compounds. Despite both being UO 2 soluble and undersaturated, analysis indicates that Cr 3+ and Pr 3+ /Gd 3+ form perovskite type (Pr 3+ /Gd 3+ )Cr 3+ O 3 phases, consistent with classical “grey phases” of spent fuel. The radiation tolerance of these phases was examined via swift heavy ion irradiations of PrCrO 3 and GdCrO 3 compounds where electron microscopy and grazing incidence synchrotron diffraction indicate significant amorphization but retention of the crystal structure. The investigation highlights the pertinence of considering the chemistry of dopants used for nuclear fuel enhancements regarding their speciation during irradiation and subsequent occurrence within spent fuel.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Shirokiy et al. (2026) studied this question.

synapsesocial.com/papers/6996a7e3ecb39a600b3edf9fhttps://doi.org/10.1038/s41529-026-00752-5
Ask AI
Helpful
Bookmark
Share
View Full Paper