A Comparative IRMPD and DFT Study of Fe3+ and UO22+ Complexation with N-Methylacetohydroxamic Acid

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TitreA Comparative IRMPD and DFT Study of Fe3+ and UO22+ Complexation with N-Methylacetohydroxamic Acid
Type de publicationJournal Article
Year of Publication2018
AuteursTerencio T, Roithova J, Brandes S, Rousselin Y, Penouilh M-J, Meyer M
JournalINORGANIC CHEMISTRY
Volume57
Pagination1125-1135
Date PublishedFEB 5
Type of ArticleArticle
ISSN0020-1669
Résumé

Iron(III) and uranyl complexes of N-methylacetohydroxamic acid (NMAH) have been investigated by mass spectrometry, infrared multiphoton dissociation (IRMPD) spectroscopy, and density functional theory (DFT) calculations. A comparison between IRMPD and theoretical IR spectra enabled one to probe the structures for some selected complexes detected in the gas phase. The results show that coordination of Fe3+ and UO22+ by hydroxamic acid is of a very similar nature. Natural bond orbital analysis suggests that bonding in uranyl complexes possesses a slightly stronger ionic character than that in iron complexes. Collision-induced dissociation (CID), IRMPD, and O-18-labeling experiments unambiguously revealed a rare example of the U=O bond activation concomitant with the elimination of a water molecule from the gaseous [UO2(NMA)(NMAH)(2)](+) complex. The U=O bond activation is observed only for complexes with one monodentate NMAH molecule forming a hydrogen bond toward one ``yl'' oxygen atom, as was found by DFT calculations. This reactivity might explain oxygen exchange observed for uranyl complexes.

DOI10.1021/acs.inorgchem.7b02567