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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Uranyl(VI) binding by bis(2-hydroxyaryl)diimine and bis(2-hydroxyaryl)diamine ligand derivatives. Synthetic, X-ray, DFT and solvent extraction studies
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Uranyl(VI) binding by bis(2-hydroxyaryl)diimine and bis(2-hydroxyaryl)diamine ligand derivatives. Synthetic, X-ray, DFT and solvent extraction studies

机译:通过双(2-羟基芳基)二亚胺和双(2-羟基芳基)二胺配体衍生物结合的铀酰(VI)。合成,X射线,DFT和溶剂萃取研究

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摘要

The interaction of uranyl(VI) nitrate with a series of bis(2-hydroxyaryl)imine (H2L1-H2O) and bis(2-hydroxyaryl)amine (H2L8, H2L9) derivatives incorporating 1,3-dimethylenebenzene or 1,3-dimethylenecyclohexane bridges between nitrogen sites is reported. Crystalline complexes of type [UO2(H2L)(NO3)(2)] (where H2L is H2L1-H2L4) were isolated from methanol. X-ray structures of the complexes of H2L1, H2L2 and H2L4 show that each of these neutral ligands bind to their respective UO22+ centres in a bidentate fashion in which coordination only occurs via each ligand's hydroxy functions. Two bidentate nitrate anions complete the metal's coordination sphere in each complex to yield hexagonal bipyramidal coordination geometries. A density functional theory (DFT) investigation of [UO2(H2L1)(NO3)(2)] in a simulated methanol environment is in accord with this complex maintaining its solid state conformation in solution. Solvent extraction experiments (water/chloroform) employing H2L1-H2L7 in the organic phase and uranyl(VI) nitrate in the aqueous phase showed that both amine derivatives, H2L8 and H2L9, yielded enhanced extraction of UO22+ over the corresponding imine derivatives, H2L1 and H2L2. These results were further compared with those obtained for the corresponding Schiff bases incorporating 1,2-phenylene and 1,2-cyclohexane bridged ligands, H2L6 and H2L2; these more rigid systems also yielded enhanced extraction of UO22+ relative to the more flexible Schiff bases H2L1-H2L5. A very significant synergistic enhancement of the extraction of UO22+ by H2L1-H2L4 and H2L7 was observed in the presence of a 10-fold excess of n-octanoic acid; the influence of pH on extraction efficiency was also investigated. A parallel set of experiments employing H2L1-H2L9 as extractants for europium(III) nitrate indicated a clear uptake preference for UO22+ over Eu3+ in all cases; separation of the uranyl ion from the rare earths is an important objective in mineral processing. (C) 2015 Elsevier Ltd. All rights reserved.
机译:硝酸铀酰(VI)与一系列掺有1,3-二亚甲基苯或1,3-二亚甲基环己烷的双(2-羟基芳基)亚胺(H2L1-H2O)和双(2-羟基芳基)胺(H2L8,H2L9)衍生物的相互作用据报道氮位之间的桥梁。从甲醇中分离出[UO2(H2L)(NO3)(2)]型晶体配合物(其中H2L为H2L1-H2L4)。 H2L1,H2L2和H2L4的复合物的X射线结构表明,这些中性配体中的每一个均以双齿方式结合至其各自的UO22 +中心,其中配位仅通过每个配体的羟基官能团发生。两个二齿硝酸根阴离子完成每个络合物中金属的配位球,产生六边形双锥体配位几何形状。在模拟甲醇环境中对[UO2(H2L1)(NO3)(2)]进行密度泛函理论(DFT)研究,符合该复合物在溶液中保持其固态构象的特点。在有机相中使用H2L1-H2L7并在水相中使用硝酸铀酰(VI)的溶剂萃取实验(水/氯仿)显示,胺衍生物H2L8和H2L9相对于相应的亚胺衍生物H2L1和H2L2均可提高UO22 +的萃取率。将这些结果与由1,2-亚苯基和1,2-环己烷桥连的配体H 2 L 6和H 2 L 2的相应席夫碱得到的结果进行比较。相对于更灵活的席夫碱H2L1-H2L5,这些更刚性的系统还提高了UO22 +的提取率。在存在10倍过量的正辛酸的情况下,观察到H2L1-H2L4和H2L7对UO22 +的萃取具有非常显着的协同增强作用。还研究了pH对萃取效率的影响。使用H2L1-H2L9作为硝酸euro(III)的萃取剂的一组平行实验表明,在所有情况下,UO22 +的吸收率均明显高于Eu3 +。从稀土中分离铀酰离子是矿物加工中的重要目标。 (C)2015 Elsevier Ltd.保留所有权利。

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