Atanassova Maria, Kukeva Rositsa, Kurteva Vanya
Department of General and Inorganic Chemistry, University of Chemical Technology and Metallurgy, 8 Kliment Okhridski Blvd., 1756 Sofia, Bulgaria.
Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, Acad. G. Bonchev Street, Block 11, 1113 Sofia, Bulgaria.
Molecules. 2023 Nov 7;28(22):7467. doi: 10.3390/molecules28227467.
A study on the synergistic extraction of Eu(III) ions with a series of chelating ligands and determination of the process parameters is presented by employing ionic liquids and typical organic diluents. The investigations of the liquid-liquid extraction, commonly applied in the separation science of 4f and 5f-ions acidic chelating compounds, 4-benzoyl-3-methyl-1-phenyl-2-pyrazolin-5-one (HP), 4-benzoyl-3-phenyl-5-isoxazolone (HPBI), and 2-thenoyltrifluoroacetone (HTTA) alone and in combination with two synergistic agents, -hexamethylpropyleneamine oxime (S2: HM-PAO) and its bis-imine precursor (S1: pre-HM-PAO), are presented. The interaction between the two extractants (acidic/neutral) in deuterochloroform was studied using H, C, and H-H NOESY experiments. Several conclusions are given highlighting the role of the ionic diluent in complexation processes and selectivity with an employment of the two synergistic agents for various metal s-, p-, d-, and f-cations in the Periodic table, with almost 25 metal ions. The objective was to optimize a system for 4f-ions solvent extraction based on the new oxime molecules with β-diketone/isoxazolone/pyrazolone partnership. As detailed above, slight enhancements of extraction efficiencies were obtained either by using basic synergistic agents such as HM-PAO and/or using pre-HM-PAO. A competitive solvent extraction test of nearly 18 f-ions by various ligands (HTTA, S1, S2, and HPBI) and the two mixtures HTTA-S1 and HTTA-S2 diluted in ILs or organic diluents was also conducted in order to evaluate the switchable diluent impact. Additionally, electron paramagnetic resonance (EPR) spectroscopy was used to study the established chemical species with Cu cations in the obtained organic extracts involving the two synergistic molecules.
本文介绍了一项关于使用离子液体和典型有机稀释剂对铕(III)离子进行一系列螯合配体协同萃取及过程参数测定的研究。研究了液 - 液萃取,该方法常用于4f和5f离子的分离科学中,单独研究了酸性螯合化合物4 - 苯甲酰基 - 3 - 甲基 - 1 - 苯基 - 2 - 吡唑啉 - 5 - 酮(HP)、4 - 苯甲酰基 - 3 - 苯基 - 5 - 异恶唑酮(HPBI)和2 - 噻吩甲酰三氟丙酮(HTTA),以及它们与两种协同剂 - 六甲基丙二胺肟(S2:HM - PAO)及其双亚胺前体(S1:pre - HM - PAO)组合的情况。使用氢、碳和氢 - 氢NOESY实验研究了氘代氯仿中两种萃取剂(酸性/中性)之间的相互作用。给出了几个结论,突出了离子稀释剂在络合过程中的作用以及使用两种协同剂对周期表中各种金属s、p、d和f阳离子(近25种金属离子)的选择性。目的是基于具有β - 二酮/异恶唑酮/吡唑啉酮组合的新型肟分子优化用于4f离子溶剂萃取的体系。如上所述,通过使用碱性协同剂如HM - PAO和/或使用pre - HM - PAO,萃取效率略有提高。还进行了各种配体(HTTA、S1、S2和HPBI)以及在离子液体或有机稀释剂中稀释的两种混合物HTTA - S1和HTTA - S2对近18种f离子的竞争性溶剂萃取试验,以评估可切换稀释剂的影响。此外,电子顺磁共振(EPR)光谱用于研究所得有机萃取物中与铜阳离子形成的化学物种,其中涉及两种协同分子。