Department of Chemistry, The University of Iowa, Iowa City, Iowa 52242, United States.
Chemical Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.
J Am Chem Soc. 2022 Nov 30;144(47):21751-21762. doi: 10.1021/jacs.2c09987. Epub 2022 Nov 15.
Lanthanides are important fission products in molten salt reactors, and understanding their structure and that of their mixtures is relevant to many scientific and technological problems including the recovery and separation of rare earth elements using molten salt electrolysis. The literature on molten salts and specifically on LaCl and LaCl-NaCl mixtures is often fragmented, with different experiments and simulations coinciding in their explanation for certain structural results but contradicting or questioning for others. Given the very practical importance that actinide and lanthanide salts have for energy applications, it is imperative to arrive at a clear unified picture of their local and intermediate-range structure in the neat molten state and when mixed with other salts. This article aims to unequivocally answer a set of specific questions: is it correct to think of long-lived octahedral coordination structures for La? What is the nature as a function of temperature of networks and intermediate-range order particularly upon dilution of the trivalent ion salt? Is the so-called scattering first sharp diffraction peak (FSDP) for neat LaCl truly indicative of intermediate-range order? If so, why is there a new lower- peak when mixed with NaCl? Are X-ray scattering and Raman spectroscopy results fully consistent and easily described by simulation results? We will show that answers to these questions require that we abandon the idea of a most prominent coordination state for M ions and instead think of multiple competing coordination states in exchange due to significant thermal energy in the molten state.
镧系元素是熔盐反应堆中的重要裂变产物,了解它们的结构及其混合物的结构对于许多科学和技术问题都很重要,包括使用熔盐电解回收和分离稀土元素。关于熔盐,特别是关于 LaCl 和 LaCl-NaCl 混合物的文献通常是分散的,不同的实验和模拟在解释某些结构结果方面是一致的,但在其他方面则相互矛盾或质疑。鉴于锕系和镧系盐在能源应用方面具有非常实际的重要性,因此必须在纯净的熔融状态以及与其他盐混合时,对其局部和中间范围结构形成清晰统一的认识。本文旨在明确回答一组具体问题:是否可以认为镧具有长寿命的八面体配位结构?在掺杂三价离子盐时,网络和中间范围有序的性质随温度变化如何?所谓的纯净 LaCl 的散射第一尖锐衍射峰(FSDP)是否真正指示中间范围有序?如果是,为什么与 NaCl 混合时会出现新的低峰?X 射线散射和拉曼光谱结果是否完全一致,并易于用模拟结果描述?我们将表明,这些问题的答案要求我们放弃 M 离子最突出的配位状态的想法,而代之以由于熔融状态下存在大量热能,因此存在多种相互竞争的配位状态。