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Combining luminescence spectroscopy parallel factor analysis and quantum chemistry to reveal metal speciation – a case study of uranyl(vi) hydrolysis

机译:结合发光光谱平行因子分析和量子化学揭示金属形态–以铀酰(vi)水解为例

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摘要

This study of aqueous metal speciation is an advanced combination of theoretical and experimental methods. Continuous wave (CW) and time-resolved laser-induced fluorescence spectroscopy (TRLFS) data of uranyl(vi) hydrolysis were analyzed using parallel factor analysis (PARAFAC). Distribution patterns of five major species were thereby derived under a fixed uranyl concentration (10–5 M) over a wide pH range from 2 to 11. UV (180 nm to 370 nm) excitation spectra were extracted for individual species. Time-dependent density functional theory (TD-DFT) calculations revealed ligand excitation (water, hydroxo, oxo) in this region and ligand-to-metal charge transfer (LMCT) responsible for luminescence. Thus excitation in the UV region is extreme ligand sensitive and specific. Combining findings from PARAFAC and DFT the [UO2(H2O)5]2+ cation (aquo complex 1 : 0) and four hydroxo complexes (1 : 1, 3 : 5, 3 : 7 and 1 : 3) were identified. The methodological concept used here is applicable to luminescent metals in general and thus enables acquisition of refined structural and thermodynamical data of lanthanide and actinide complexation.
机译:水性金属形态研究是理论和实验方法的高级结合。使用并行因子分析(PARAFAC)分析了铀酰(vi)水解的连续波(CW)和时间分辨的激光诱导荧光光谱(TRLFS)数据。因此,在固定的铀酰浓度(10 –5 M)下,在2至11的宽pH范围内得出了五种主要物种的分布模式。提取了UV(180 nm至370 nm)的激发光谱单个物种。随时间变化的密度泛函理论(TD-DFT)计算显示该区域的配体激发(水,羟基,氧代)和负责发光的配体到金属的电荷转移(LMCT)。因此,在紫外线区域的激发是极端的配体敏感性和特异性。结合PARAFAC和DFT的发现,[UO2(H2O)5] 2 + 阳离子(水合物1 complex:0)和四个羟基络合物(1:1、3:5、3:7和1: 3)被确定。此处使用的方法学概念通常适用于发光金属,因此可以获取镧系元素和act系元素络合物的精确的结构和热力学数据。

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