Prediction of Redox Potentials for Ac, Th, and Pa in Aqueous Solution.

J Phys Chem A

Department of Chemistry and Biochemistry, The University of Alabama, Tuscaloosa, Alabama 35487, United States.

Published: November 2024

AI Article Synopsis

  • Density functional theory combined with small core pseudopotentials was used to calculate the redox potentials of actinides (Ac, Th, Pa) in aqueous solution, taking into account solvation effects through various models.
  • The geometry calculations for Ac(III), Th(IV), and Pa(V) aligned well with experimental data, and the redox potentials were mostly within ±0.2 V of experimental measurements, particularly using the COSMO model.
  • The study explored the redox pathways of Pa(V/IV), revealing that redox potentials shift to more negative values at higher pH, while positive values for Th and Pa in An(I/0) contrasts with negative

Article Abstract

Density functional theory in conjunction with small core pseudopotentials and the associated basis sets was used to calculate potentials for multiple redox couples, covering a range of oxidation states for Ac (0 to III), Th (0 to IV), and Pa (0 to V) in aqueous solution. Solvation effects were incorporated using a supermolecule-continuum approach, with 30 water molecules representing two solvation shells, and the COSMO and SMD implicit solvation models. The calculated geometries for Ac(III), Th(IV), and Pa(V) were in reasonable agreement with the available experimental data. Using the COSMO model with the B3LYP functional, the calculated redox potentials were within ±0.2 V from experiment for most redox couples. Several pathways were explored for the Pa(V/IV) redox couple for different forms of Pa(V) and Pa(IV). Most Pa(V/IV) redox couples have very similar potentials, ranging from 0 to -0.4 V up to a pH of 1.4. At pH = 1.4, the potentials shift to values that are more negative than -0.7 V, reflecting the growing unfavorable nature of the redox process at higher pH levels. The calculated values for An(III/II) potentials were consistent with prior estimates and the available experimental data. The predicted redox potentials for An(II/I) were highly negative, as expected. For An(I/0) potentials, Th and Pa exhibited positive values, contrasting with the negative values calculated for Ac. The An/An(0) potentials agreed better with the experimental data when using the COSMO solvation model as compared to the SMD model.

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Source
http://dx.doi.org/10.1021/acs.jpca.4c05693DOI Listing

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