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Diffusion coefficients and local structure in basic molten fluorides:in situ NMR measurements and molecular dynamics simulations

机译:碱性熔融氟化物的扩散系数和局部结构:原位NMR测量和分子动力学模拟

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The local structure and the dynamics of molten LiF-KF mixtures have been studied by nuclear magnetic resonance (NMR) and molecular dynamics simulations. We have measured and calculated the self-diffusion coefficients of fluorine, lithium and potassium across the full composition range around the liquidus temperature and at 1123 K. Close to the liquidus temperature, D_F, D_(Li) and D_K change with composition in a way that mimics the phase diagram shape. At 1123 K D_F, D_(Li) and D_K depend linearly on the LiF molar fraction. These results show that the composition affects the self-diffusion of anions and cations more weakly than the temperature. The activation energy for diffusion was also determined and its value can be correlated with the strength of the anion-cation interaction in molten fluoride salts.
机译:通过核磁共振(NMR)和分子动力学模拟研究了熔融的LiF-KF混合物的局部结构和动力学。我们已经测量并计算了在液相线温度和1123 K附近整个成分范围内氟,锂和钾的自扩散系数。接近液相线温度,D_F,D_(Li)和D_K随成分的变化以一种方式模仿相图形状。在1123 K D_F,D_(Li)和D_K线性取决于LiF摩尔分数。这些结果表明,该组成比温度对阴离子和阳离子的自扩散影响更弱。还确定了扩散的活化能,其值可以与熔融氟化盐中阴离子-阳离子相互作用的强度相关。

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