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PMID: 24737451 Published · ppublish English

A roadmap to uranium ionic liquids: anti-crystal engineering.

Chemistry (Weinheim an der Bergstrasse, Germany) ·Vol. 20 ·No. 21 ·2015-05-21

Yaprak Damla, Spielberg Eike T, Bäcker Tobias, Richter Mark, Mallick Bert, Klein Axel, Mudring Anja-Verena

Abstract

In the search for uranium-based ionic liquids, tris(N,N-dialkyldithiocarbamato)uranylates have been synthesized as salts of the 1-butyl-3-methylimidazolium (C4mim) cation. As dithiocarbamate ligands binding to the UO2(2+) unit, tetra-, penta-, hexa-, and heptamethylenedithiocarbamates, N,N-diethyldithiocarbamate, N-methyl-N-propyldithiocarbamate, N-ethyl-N-propyldithiocarbamate, and N-methyl-N-butyldithiocarbamate have been explored. X-ray single-crystal diffraction allowed unambiguous structural characterization of all compounds except N-methyl-N-butyldithiocarbamate, which is obtained as a glassy material only. In addition, powder X-ray diffraction as well as vibrational and UV/Vis spectroscopy, supported by computational methods, were used to characterize the products. Differential scanning calorimetry was employed to investigate the phase-transition behavior depending on the N,N-dialkyldithiocarbamato ligand with the aim to establish structure-property relationships regarding the ionic liquid formation capability. Compounds with the least symmetric N,N-dialkyldithiocarbamato ligand and hence the least symmetric anions, tris(N-methyl-N-propyldithiocarbamato)uranylate, tris(N-ethyl-N-propyldithiocarbamato)uranylate, and tris(N-methyl-N-butyldithiocarbamato)uranylate, lead to the formation of (room-temperature) ionic liquids, which confirms that low-symmetry ions are indeed suitable to suppress crystallization. These materials combine low melting points, stable complex formation, and hydrophobicity and are therefore excellent candidates for nuclear fuel purification and recovery.

Keywords
IR spectroscopy crystal structure density functional calculations ionic liquids uranium
Article Info
Journal
Chemistry (Weinheim an der Bergstrasse, Germany)
Abbr.
Chemistry
Published
2015-05-21
Indexed
2014-05-14
Updated
2014-05-14
Language
English
Country/Region
Germany
NLM ID
9513783
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