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Effect of alkaline metal cations on the ionic structure of cryolite melts: Ab-initio NpT MD study

机译:碱金属阳离子对低温熔体离子结构的影响:AB-Initio NPT MD研究

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Ab initio molecular dynamics simulations in an NpT ensemble have been performed to study the role of alkaline metal cations (Me = Li, Na, K, Rb) on the structure and vibrational properties of melts of Me-cryolites (Me3AlF6) at T = 1300 K. In all melts examined in this work, the species AlF52- has been found to be formed at the highest abundance [from 58% (Li) to 70% (Na)] among the Al-containing anionic clusters. The concentration of clusters AlF4- increases with the size of cations while that of anions AlF63- follows the opposite trend and it becomes negligible in the melts of the K- and Rb-cryolites. The computed percentage of the Al atoms participating in the formation of dimers Al2Fm6-m bridged via common F atoms is significant only in the case of Li- and Na-cryolites (16% and 10%, respectively) and the formation of even larger aggregates is found to be unlikely in all four melts. The percentage of the F atoms that are not bound to Al is similar to 20% in all four melts and the ions formed by Me+ and F- are found to be only short-lived. Vibrational analysis has been performed using the velocity autocorrelation functions computed for the Cartesian and selected internal coordinates describing Raman-active symmetric stretching vibrations of different AlFn species. The results of vibrational analysis allowed us to identify trends in the variation of positions and shapes of peaks corresponding to the anionic fragments AlF4-, AlF52-, and AlF63- with the size of cations, and these trends are found to be consistent with those deduced from the available Raman spectroscopy experiments. Our findings represent a new insight into the properties of cryolite melts, which will be useful for the interpretation of experimental data. Published by AIP Publishing.
机译:已经进行了NPT集合中的AB Initio分子动力学模拟,以研究碱金属阳离子(Me = Li,Na,K,RB)对Me-Libolites(Me3AlF6)的结构和振动性质在T = 1300中的作用K.在这项工作中检查的所有熔体中,已发现物种Alf52-在含Al阴离子簇中的最高丰度[从58%(Li)至70%(Na)中形成。簇的浓度Alf4-随着阳离子的尺寸而增加,而阴离子Alf63-遵循相反的趋势,并且在k-和rb-rubolites的熔体中可以忽略不计。参与通过普通F原子的二聚体Al2Fm6-M的Al 2FM6-M的Al原子的计算百分比仅在Li-和Na-Lirolites(分别为16%和10%)和形成更大的聚集体的情况下显着在所有四个融化中被发现不太可能。不与Al绑定的F原子的百分比在所有四种熔体中的20%类似,由ME +和F-形成的离子仅被发现仅是短暂的。使用针对笛卡尔和所选择的内部坐标计算的速度自相关函数进行了振动分析,描述了不同ALFN物种的拉曼有源对称拉伸振动的选择内部坐标。振动分析的结果允许我们识别与阴离子片段Alf4-,Alf52-和Alf63相对应的峰的变化和形状与阳离子的峰值的趋势,并且发现这些趋势与推导的人一致从可用的拉曼光谱实验。我们的调查结果代表了对冰块熔体性质的新洞察力,这对于对实验数据的解释将是有用的。通过AIP发布发布。

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