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Mechanisms of neptunium redox reactions in nitric acid solutions

机译:硝酸溶液中Neptunium Redox反应的机制

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摘要

The first transuranium element neptunium (Np) exhibits complicated behavior in acidic solutions as it adopts a wide range of oxidation states typically from +3 to +6 and coordinates with a large variety of ligands. In particular, the accurate determination of Np redox potentials in nitric acid solutions is challenging due to overlapping chemical and electrochemical reactions leading to significant experimental uncertainties. Over the past several decades, spectrophotometry has been extensively applied to identify and characterize Np solution species in different oxidation states. However, relevant spectral databases of Np in nitric acid solutions that can serve for reference purposes are yet to be established due to the experimental difficulty in isolating and stabilizing Np species in pure oxidation states without compromising their solution optical properties. This work demonstrates that a combination of voltammetry and controlled- potential in situ thin-layer spectropotentiometry overcomes these challenges, and vis-NIR spectra of electrochemically generated Np species in pure +3, +4, +5, or +6 oxidation states in the systematically varied 0.5-4 M nitric acid solutions were obtained. In situ optical monitoring of the interconversion between adjacent Np oxidation states resulted in elucidation of the mechanisms of the involved redox reactions and an in-depth understanding of the relative stability of the Np oxidation states, and allowed benchmarking of the redox potentials of the NpO2~(2+)/NpO2~+, NpO2~+/Np~(4+) and Np~(4+)/Np~(3+) couples. Notably, the NpO2~+/Np~(4+) couple was distinguished from the proximal Np4+/Np3+ process overcoming previous concerns and challenges encountered in the accurate determination of the respective potentials.
机译:第一个经硫酸元素Neptunium(NP)在酸性溶液中表现出复杂的行为,因为它采用宽范围的氧化态通常为+ 3至+6和具有大量配体的坐标。特别地,由于具有重叠的化学和电化学反应导致显着的实验不确定因素,精确测定硝酸溶液中的NP氧化还原电位是挑战性的。在过去几十年中,分光光度法已被广泛应用于鉴定和表征不同氧化态中的NP溶液物种。然而,由于在纯氧化状态下分离和稳定NP种类而不损害其溶液光学性质,尚未建立可用于参考目的的硝酸溶液中的NP硝酸溶液中的NP的相关光谱数据库。这项工作表明,伏安法和控制潜力的组合原位薄层光谱管状测量测定法克服了纯+3,+ 4,+5或+6氧化态中电化学产生的NP物种的这些挑战和Vis-niR光谱得到系统地改变的0.5-4米硝酸溶液。原位光学监测相邻的NP氧化状态之间的相互互连导致涉及的氧化还原反应的机制和对NP氧化态的相对稳定性的深入理解,并允许NPO2的氧化还原电位的基准测试(2 +)/ NPO2〜+,NPO2〜+ / NP〜(4+)和NP〜(4 +)/ NP〜(3+)夫妻。值得注意的是,NPO2〜+ / NP〜(4 +)夫妇与近期NP4 + / NP3 +工艺区分克服了以前的担忧和挑战,在准确地确定各个电位的情况下。

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  • 来源
    《Inorganic Chemistry Frontiers》 |2017年第4期|共14页
  • 作者单位

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 USA.;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 USA.;

    Energy and Environment Directorate Pacific Northwest National Laboratory Richland Washington 99352 USA.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
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