Radiolytic Evaluation of 3,4,3-LI(1,2-HOPO) in Aqueous Solutions
The octadentate hydroxypyridinone ligand 3,4,3-LI(1,2-HOPO) (abbreviated as HOPO) has been identified as a promising candidate for both chelation and f-element separation technologies, two applications that require optimal performance in radiation environments. However, the radiation robustness of...
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Veröffentlicht in: | The journal of physical chemistry. B 2023-05, Vol.127 (17), p.3931-3938 |
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Sprache: | eng |
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Zusammenfassung: | The octadentate hydroxypyridinone ligand 3,4,3-LI(1,2-HOPO) (abbreviated as HOPO) has been identified as a promising candidate for both chelation and f-element separation technologies, two applications that require optimal performance in radiation environments. However, the radiation robustness of HOPO is currently unknown. Here, we employ a combination of time-resolved (electron pulse) and steady-state (alpha self-radiolysis) irradiation techniques to elucidate the basic chemistry of HOPO and its f-element complexes in aqueous radiation environments. Chemical kinetics were measured for the reaction of HOPO and its Nd(III) ion complex ([NdIII(HOPO)]−) with key aqueous radiation-induced radical transients (eaq –, H• atom, and •OH and NO3 • radicals). The reaction of HOPO with the eaq – is believed to proceed via reduction of the hydroxypyridinone moiety, while transient adduct spectra indicate that reactions with the H• atom and •OH and NO3 • radicals proceeded by addition to HOPO’s hydroxypyridinone rings, potentially allowing for the generation of an extensive suite of addition products. Complementary steady-state 241Am(III)-HOPO complex ([241AmIII(HOPO)]−) irradiations showed the gradual release of 241Am(III) ions with increasing alpha dose up to 100 kGy, although complete ligand destruction was not observed. |
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ISSN: | 1520-6106 1520-5207 |
DOI: | 10.1021/acs.jpcb.3c01469 |