Vanagas Nicole A, Higgins Robert F, Wacker Jennifer N, Asuigui Dane Romar C, Warzecha Evan, Kozimor Stosh A, Stoll Sarah L, Schelter Eric J, Bertke Jeffery A, Knope Karah E
Department of Chemistry, Georgetown University, 37th and O Streets NW, Washington, D.C., 20057, United States.
P. Roy and Diana T. Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, 231 S. 34th Street, Philadelphia, Pennsylvania, 19104, United States.
Chemistry. 2020 May 7;26(26):5872-5886. doi: 10.1002/chem.201905759. Epub 2020 Apr 21.
Uranium(IV) complexation by 2-furoic acid (2-FA) was examined to better understand the effects of ligand identity and reaction conditions on species formation and stability. Five compounds were isolated: [UCl (2-FA) (H O) ] (1), [U Cl O (THF) (2-FA) ]⋅2 THF (2), [U O (OH) (H O) (2-FA) ]⋅7 THF⋅H O (3), [U O (OH) (H O) (2-FA) ]⋅8.76 H O (4), and [U Cl O (OH) (H O) ]⋅m H O⋅n THF (5). The structures were determined by single-crystal X-ray diffraction and further characterized by Raman, IR, and optical absorption spectroscopy. The thermal stability and magnetic behavior of the compounds were also examined. Variations in the synthetic conditions led to notable differences in the structural units observed in the solid state. At low H O/THF ratios, a tetranuclear oxo-bridged [U O ] core was isolated. Aging of this solution resulted in the formation a U oxo cluster capped by chloro and water ligands. However, at increasing water concentrations only hexanuclear units were observed. In all cases, at temperatures of 100-120 °C, UO nanoparticles formed.
研究了2-呋喃甲酸(2-FA)与铀(IV)的络合作用,以更好地了解配体特性和反应条件对物种形成和稳定性的影响。分离出了五种化合物:[UCl(2-FA)(H₂O)₅](1)、[U₂Cl₂O₂(THF)₂(2-FA)₂]·2THF(2)、[U₃O₅(OH)(H₂O)₃(2-FA)₃]·7THF·H₂O(3)、[U₃O₅(OH)(H₂O)₃(2-FA)₃]·8.76H₂O(4)和[U₂Cl₂O₂(OH)(H₂O)₄]·mH₂O·nTHF(5)。通过单晶X射线衍射确定了结构,并通过拉曼光谱、红外光谱和光吸收光谱进行了进一步表征。还研究了这些化合物的热稳定性和磁行为。合成条件的变化导致在固态中观察到的结构单元存在显著差异。在低H₂O/THF比时,分离出了四核氧桥联的[U₃O₅]核。该溶液老化导致形成了由氯和水配体封端的铀氧簇。然而,随着水浓度的增加,仅观察到六核单元。在所有情况下,在100-120°C的温度下,形成了UO纳米颗粒。