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In situ experimental approach of the speciation in molten lanthanide and actinide fluorides combining NMR, EXAFS and Molecular Dynamics.

机译:结合NMR,EXAFS和分子动力学的熔融镧系元素和act系元素氟化物形态形成的原位实验方法。

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We study the nature and the distribution of the different anionic species existing in fluoride melts of nuclear interest. Our approach is based on the combination of NMR and EXAFS spectroscopy, both sensitive to the microstructure of the melt, with Molecular Dynamics calculations. Because of its analogy with actinide fluorides, we have studied zirconium fluoride and its mixtures with alkali fluorides. In MF-ZrF4 systems, MD simulations, in agreement with ~(91)Zr and ~(19)F NMR and EXAFS experiments, put in evidence the coexistence of 3 different Zr-based complexes [ZrF_6]~(2-), [ZrF_7]~(3-), and [ZrF_8]~(4-) in the melt. Their proportions depend on the amount of ZrF_4 and on the nature of the alkali (Li~+, Na~+ and K~+). In the case of lanthanide fluorides, a similar approach performed in the system MF-LaF_3 evidences some structural similarity, mainly with the existence of different complexes and upon free fluorine content evolution.
机译:我们研究了核感兴趣的氟化物熔体中存在的不同阴离子物种的性质和分布。我们的方法是基于NMR和EXAFS光谱的结合,这两种方法都对熔体的微观结构敏感,并结合了分子动力学计算。由于其类似于act系元素氟化物,我们研究了氟化锆及其与碱金属氟化物的混合物。在MF-ZrF4系统中,MD模拟与〜(91)Zr和〜(19)F NMR和EXAFS实验一致,证明了3种不同的Zr基络合物[ZrF_6]〜(2-),[ ZrF_7]〜(3-)和[ZrF_8]〜(4-)。它们的比例取决于ZrF_4的含量和碱的性质(Li〜+,Na〜+和K〜+)。就镧系元素氟化物而言,在系统MF-LaF_3中执行的相似方法证明存在某些结构相似性,主要是存在不同的配合物并释放出游离氟。

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