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在熔融 LiF-ZrF4 体系中,结构演变与组成呈非单调关系的原位实验证据。

In situ experimental evidence for a nonmonotonous structural evolution with composition in the molten LiF-ZrF4 system.

机构信息

Conditions Extrêmes: Matériaux Haute Température et Irradiation, CNRS, 1D avenue de la Recherche Scientifique, F-45071 Orléans cedex 2, France.

出版信息

J Phys Chem B. 2010 May 20;114(19):6472-9. doi: 10.1021/jp912195j.

Abstract

We propose in this paper an original approach to study the structure of the molten LiF-ZrF(4) system up to 50 mol % ZrF(4), combining high-temperature nuclear magnetic resonance (NMR) and extended X-ray absorption fine structure (EXAFS) experiments with molecular dynamics (MD) calculations. (91)Zr high-temperature NMR experiments give an average coordination of 7 for the zirconium ion on all domains of composition. MD simulations, in agreement with EXAFS experiments at the K-edge of Zr, provide evidence for the coexistence of three different Zr-based complexes, ZrF(6), ZrF(7), and ZrF(8), in the melt; the evolution of the concentration of these species upon addition of ZrF(4) is quantified. Smooth variations are observed, apart from a given composition at 35 mol % ZrF(4), for which an anomalous point is observed. Concerning the anion coordination, we observe a predominance of free fluorides at low concentrations in ZrF(4), and an increase of the number of bridging fluoride ions between complexes with addition of ZrF(4).

摘要

本文提出了一种新的方法来研究熔融 LiF-ZrF(4) 体系的结构,直到 50 mol% ZrF(4),结合高温核磁共振(NMR)和扩展 X 射线吸收精细结构(EXAFS)实验与分子动力学(MD)计算。(91)Zr 高温 NMR 实验表明,在所有组成域中,锆离子的平均配位数为 7。MD 模拟与 Zr 的 K 边 EXAFS 实验一致,证明了在熔体中存在三种不同的基于 Zr 的配合物,ZrF(6)ZrF(7)ZrF(8);定量了这些物种在添加 ZrF(4)时的浓度变化。除了在 35 mol% ZrF(4)的特定组成外,观察到了平滑的变化,在该组成处观察到了异常点。关于阴离子配位,我们观察到在 ZrF(4)的低浓度下,游离氟化物占主导地位,并且随着 ZrF(4)的添加,连接复合物之间的桥联氟化物离子的数量增加。

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