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Thermodynamics of gallium-stabilized delta-plutonium: A high-temperature drop calorimetry study

  • Andrew C. Strzelecki
  • , Najeb M. Abdul-Jabbar
  • , Theresa A. Lee
  • , Shane C. Mann
  • , Ubaldo Gallegos
  • , Michael Ramos
  • , Ramiro Pereyra
  • , Doug Pete
  • , Luis Morales
  • , Nathan A. Conroy
  • , Hongwu Xu
  • , Jeremy N. Mitchell

Research output: Contribution to journalArticlepeer-review

Abstract

Throughout the Cold War (1947-1991), both the United States and the former Soviet Union independently derived a phase diagram for the Pu-Ga system that has different implications on Pu phase stability. In the phase diagram produced by the United States, the Pu δ-phase is thermodynamically stable at room temperatures when Ga content is between 2 and 9 at. %. The diagram produced by the Soviet Union shows the δ-phase undergoing an eutectoid decomposition into the α-Pu + α-Pu3Ga at 7.9 at. % Ga and 370 K. This would suggest that Ga-stabilized δ-Pu is metastable with respect to α-Pu + α-Pu3Ga at 298 K. To investigate this, and the thermodynamic behavior of Ga in the FCC lattice of δ-Pu, we have utilized high-temperature drop calorimetry to study the enthalpy of formation of two δ-Pu1−xGax compositions. In doing so, mixing models (regular and subregular) were developed to understand the thermodynamic behavior of Ga in the FCC lattice of δ-Pu and found a strong departure from ideal conditions, which suggests Ga ordering in the FCC lattice of δ-Pu. Overall, it was found that δ-Pu1−xGax is enthalpically metastable with respect to α-Pu + Pu3Ga at 298 K.

Original languageEnglish
Article number063404
JournalJournal of Vacuum Science and Technology A: Vacuum, Surfaces and Films
Volume43
Issue number6
DOIs
StatePublished - Dec 1 2025

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