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溶液中铀(VI)与8-羟基喹啉-5-磺酸盐的氧配合物:结构研究与光物理行为

Oxocomplexes of U(vi) with 8-hydroxyquinoline-5-sulfonate in solution: structural studies and photophysical behaviour.

作者信息

Ramos M Luísa, Justino Licínia L G, Barata Rui, Costa Telma, Nogueira Bernardo A, Fausto Rui, Burrows Hugh D

机构信息

Centro de Química and Department of Chemistry, University of Coimbra, 3004-535 Coimbra, Portugal.

出版信息

Dalton Trans. 2017 Jul 25;46(29):9358-9368. doi: 10.1039/c7dt01324h.

Abstract

Multinuclear (H and C) NMR, and Raman spectroscopy, combined with DFT calculations, provide detailed information on the complexation between U(vi) oxoions and 8-hydroxyquinoline-5-sulfonate (8-HQS) in aqueous solution. Over the concentration region studied, U(vi) oxoions (uranyl ions) form one dominant complex with 8-HQS in water in the pH range 3-6, a mononuclear 1 : 2 (metal : ligand) complex, with the metal centre (UO) coordinated to two 8-HQS ligands, together with one or more water molecules. An additional minor 1 : 1 complex has also been detected for solutions with a 1 : 1 metal : ligand molar ratio. The geometry of the dominant complex is proposed based on the combination of the NMR and Raman results with DFT calculations. Further information on the electronic structure of the complex has been obtained from UV/visible absorption and luminescence spectra. The complex of U(vi) and 8-HQS is non-luminescent, in contrast to what has been observed with this ligand and many other metal ions. We suggest that this is due to the presence of low-lying ligand-to-metal charge transfer (LMCT) states below the emitting ligand-based and uranyl-based levels which quench their emission. These studies have fundamental importance and are also relevant in the context of environmental studies, and the water soluble ligand 8-HQS has been chosen for application in uranium remediation of aqueous environments.

摘要

多核(氢和碳)核磁共振以及拉曼光谱,结合密度泛函理论计算,提供了关于水溶液中U(VI)含氧离子与8-羟基喹啉-5-磺酸盐(8-HQS)络合作用的详细信息。在所研究的浓度范围内,U(VI)含氧离子(铀酰离子)在pH值为3 - 6的水中与8-HQS形成一种主要络合物,即单核1:2(金属:配体)络合物,金属中心(UO)与两个8-HQS配体配位,还结合一个或多个水分子。对于金属与配体摩尔比为1:1的溶液,还检测到一种额外的次要1:1络合物。基于核磁共振和拉曼结果与密度泛函理论计算的结合,提出了主要络合物的几何结构。从紫外/可见吸收光谱和发光光谱中获得了关于该络合物电子结构的进一步信息。与该配体和许多其他金属离子的情况不同,U(VI)与8-HQS的络合物不发光。我们认为这是由于在基于配体和铀酰的发射能级以下存在低能的配体到金属的电荷转移(LMCT)态,从而淬灭了它们的发射。这些研究具有重要的基础意义,在环境研究背景下也具有相关性,并且已选择水溶性配体8-HQS用于水环境中铀的修复。

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