4.7 Article

Lanthanum(III) and uranyl(VI) diglycolamide complexes: Synthetic precursors and structural studies involving nitrate complexation

Journal

INORGANIC CHEMISTRY
Volume 47, Issue 11, Pages 4691-4695

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ic7025076

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The synthesis and structural characterization of lanthanum(111) and uranyl(VI) complexes coordinated by tridentate diglycolamide (DGA) ligands O(CH2C(O)NR2)(2) [R = i-Pr (L-1), i-Bu (L-2)] are described. Reaction of L with UO2Cl2(H2O), forms the uranyl(VI) cis-clichloride adducts UO2Cl2L [L = L-1 (1a), L-2 (1b)], while reaction of excess L with the corresponding metal nitrate hydrate produces [LaL3][La(NO3)(6)] [L = L-1 (2a), L-2 (2b)] for lanthanum and UO2(NO3)(2)L [L = L-1 (3a), L-2 (3b)] for uranium. Compounds 2b and 3a have been structurally characterized. The solid-state structure of the cation of 2b shows a triple-stranded helical arrangement of threE! tridentate DGA ligands with approximate D-3 point-group symmetry, while the counteranion consists of six bidentate nitrate ligands coordinated around a second La center. The solid-state structure of 3a shows a tridentate DGA ligand coordinated along the equatorial plane perpendicular to the O = U = O unit as well as two nitrate ligands, one bidentate and oriented in the equatorial plane and the other monodentate and oriented parallel to the uranyl unit with the oxygen donor atom situated above the mean equatorial plane. Ambient-temperature NMR spectra for 3a and 3b indicated an averaged chemical environment of high symmetry consistent with fluxional nitrate hapticity, while spectroscopic data obtained at -30 degrees C revealed lower symmetry consistent with the slow-exchange limit for this process.

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