The electron affinity of the uranium atom

The results of a combined experimental and computational study of the uranium atom are presented with the aim of determining its electron affinity. Experimentally, the electron affinity of uranium was measured via negative ion photoelectron spectroscopy of the uranium atomic anion, U−. Computational...

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Veröffentlicht in:The Journal of chemical physics 2021-06, Vol.154 (22), p.224307-224307, Article 224307
Hauptverfasser: Ciborowski, Sandra M., Liu, Gaoxiang, Blankenhorn, Moritz, Harris, Rachel M., Marshall, Mary A., Zhu, Zhaoguo, Bowen, Kit H., Peterson, Kirk A.
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Sprache:eng
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Zusammenfassung:The results of a combined experimental and computational study of the uranium atom are presented with the aim of determining its electron affinity. Experimentally, the electron affinity of uranium was measured via negative ion photoelectron spectroscopy of the uranium atomic anion, U−. Computationally, the electron affinities of both thorium and uranium were calculated by conducting relativistic coupled-cluster and multi-reference configuration interaction calculations. The experimentally determined value of the electron affinity of the uranium atom was determined to be 0.309 ± 0.025 eV. The computationally predicted electron affinity of uranium based on composite coupled cluster calculations and full four-component spin–orbit coupling was found to be 0.232 eV. Predominately due to a better convergence of the coupled cluster sequence for Th and Th−, the final calculated electron affinity of Th, 0.565 eV, was in much better agreement with the accurate experimental value of 0.608 eV. In both cases, the ground state of the anion corresponds to electron attachment to the 6d orbital.
ISSN:0021-9606
1089-7690
DOI:10.1063/5.0046315