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Electrochemical behavior of uranyl in anhydrous polar organic media

机译:无水极性有机培养基中铀酰的电化学行为

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Weak complexes between pentavalent and hexavalent actinyl cations have been reported to exist in acidic, non-complexing high ionic strength aqueous media. Such "cation-cation complexes" were first identified in the context of actinide-actinide redox reactions in acidic aqueous media relevant to solvent extraction-based separation systems, hence their characterization is of potential interest for advanced nuclear fuel reprocessing. This chemistry could be relevant to efforts to develop advanced actinide separations based on the upper oxidation states of americium, which are of current interest. In the present study, the chemical behavior of pentavalent uranyl was examined in non-aqueous, aprotic polar organic solvents (propylene carbonate and acetonitrile) to determine whether UO2+ cations generated at the reducing working electrode surface would interact with the UO22+ cations in the bulk phase to form cation-cation complexes in such media. In magnesium perchlorate media, the electrolyte adsorbed onto the working electrode surface and interfered with the uranyl reduction/diffusion process through an ECE (electron transfer/chemical reaction/electron transfer) mechanism. In parallel studies of uranyl redox behavior in tetrabutylammonium hexafluorophosphate solutions, an EC (electron transfer/chemical reaction) mechanism was observed in the cyclic voltam-mograms. Ultimately, no conclusive electrochemical evidence demonstrated uranyl cation-cation interactions in the non-aqueous, aprotic polar organic solvent solutions, though the results reported do not completely rule out the presence of UO2+ . UO22+ complexes.
机译:据报道,五价和六价辐射阳离子之间的弱复合物存在于酸性,无络合的高离子强度水性介质中。首先在与溶剂萃取的分离系统相关的酸性水性介质中的actinide-Actinide Redox反应中首先鉴定出这样的“阳离子络合物”,因此它们的表征对于先进的核燃料再加工是潜在的兴趣。这种化学与基于亚美的上部氧化州的努力努力发展,这是具有当前兴趣的氧化态。在本研究中,在非水,非质子极性有机溶剂(碳酸亚丙酯和乙腈)中检查五价铀酰的化学行为,以确定在还原工作电极表面上产生的UO2 +阳离子是否会与批量相中的UO22 +阳离子相互作用在这种培养基中形成阳离子阳离子络合物。在高氯酸镁介质中,吸附在工作电极表面上的电解质并通过ECE(电子转移/化学反应/电子转移)机制干扰铀酰降低/扩散过程。在四丁基六氟磷酸溶液中铀酰氧化还原行为的并行研究,在循环伏特-Mograms中观察到EC(电子转移/化学反应)机制。最终,没有确凿的电化学证据证明了非水,非质子极性有机溶剂溶液中铀酰阳离子阳离子相互作用,尽管报告的结果并未完全排除UO2 +的存在。 UO22 +复合物。

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