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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Formation and hydrolysis of polynuclear Th(IV) complexes - a nano-electrospray mass-spectrometry study
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Formation and hydrolysis of polynuclear Th(IV) complexes - a nano-electrospray mass-spectrometry study

机译:多核Th(IV)配合物的形成和水解-纳米电喷雾质谱研究

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摘要

Polynuclear hydroxide complexes play an important role for the hydrolysis of tetravalent thorium ions in aqueous solution, in particular for Th(IV) concentrations exceeding some [Th(IV)] = 10(-4) M. Consequently, these polymers must be considered when describing hydrolysis of Th(IV) or dissolution processes of Th(IV) solids. In the past, considerable efforts were made to obtain equilibrium formation constants of these polymers and different stoichiometries for dimers, tetramers and hexamers have been suggested. However, most information was obtained from indirect methods, in particular, from potentiometric titrations. In the present work, we present an approach of directly quantifying polymeric metal hydroxide complexes in solution. By nano-electrospray mass-spectrometry the degrees of polymerization, i.e. the numbers of Th4+ ions and the numbers of hydroxide ligands, and as a consequence, also the charges of the complexes are measured. All monoand polynuclear species which are present in solution are quantified simultaneously down to species contributing less than 0.1% of the total [Th(IV)] concentration. Solutions of [Th(IV)] = 6 x 10(-6) -10(-1) M are investigated in HCl at [H+] = 10(-4) M. More than 30 different polymeric complexes are observed with the general trend of increasing number of hydroxide ligands with decreasing acidity. A surprising finding is the presence of the pentamer Th-5(OH)(y)(z+) which was not described in the literature before. With decreasing Th(IV) concentration the stability field of polymers narrows continuously until polymers can no longer be detected below [Th(IV)] = 10(-5) M.
机译:多核氢氧化物配合物在水溶液中四价th离子的水解中起着重要作用,尤其是对于Th(IV)浓度超过某些[Th(IV)] = 10(-4)M的情况。因此,当描述了Th(IV)的水解或Th(IV)固体的溶解过程。过去,为获得这些聚合物的平衡形成常数付出了巨大的努力,并且已经提出了二聚体,四聚体和六聚体的不同化学计量。但是,大多数信息是从间接方法中获得的,尤其是从电位滴定中获得的。在目前的工作中,我们提出了一种直接定量溶液中聚合金属氢氧化物络合物的方法。通过纳米电喷雾质谱,聚合度,即Th 4+离子的数目和氢氧化物配体的数目,因此,还测量了配合物的电荷。同时定量分析溶液中存在的所有单核和多核物种,直至占总[Th(IV)]浓度不到0.1%的物种。在[H +] = 10(-4)M的HCl中研究[Th(IV)] = 6 x 10(-6)-10(-1)M的溶液。酸性降低的氢氧化物配体数量增加的趋势。一个令人惊讶的发现是五聚体Th-5(OH)(y)(z +)的存在,这在以前的文献中没有描述过。随着Th(IV)浓度的降低,聚合物的稳定性场不断缩小,直到无法再检测到低于[Th(IV)] = 10(-5)M的聚合物为止。

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