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Structural properties of liquid Al2O3: A molecular dynamics study

机译:液态Al2O3的结构特性:分子动力学研究

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Molecular dynamics (MD) simulations of liquid aluminum oxide (Al2O3) were carried out on a system with up to 1800 particles, using a pairwise potential. All simulations were done in the microcanonical ensemble, for two densities, 3.0 and 3.175 g/cm(3), at temperatures of 2200, 2600, and 3000 K. A detailed analysis of the interatomic distances, given by the partial pair-distribution functions and the bond-angles distribution, reveals that in the liquid state there is st short range order dominated by a somewhat distorted (AlO4)(5-) tetrahedron, in agreement with recent experimental measurements. This conclusion is supported by the distribution of nearest-neighbor coordinations, where more than 60% of Al atoms have four O as nearest neighbors. This finding does not change over the explored temperature range. Because of the presence of twofold rings, the connectivity of (AlO4)(5-) units consists of corner, edge, and face sharing tetrahedra. Based in this structural information, i.e., bond lengths, coordination numbers, bond-angle distributions, and ring statistics, our MD simulation allows us to put forward a possible structure of liquid Al2O3. [References: 37]
机译:使用成对电位,在多达1800个颗粒的系统上进行了液态氧化铝(Al2O3)的分子动力学(MD)模拟。所有的模拟都是在微规范集合中完成的,在2200、2600和3000 K的温度下,两种密度分别为3.0和3.175 g / cm(3)。对原子间距离的详细分析由部分对分布函数给出和键角分布揭示出,在液态下,存在一个由一些畸变的(AlO4)(5-)四面体主导的短距离顺序,这与最近的实验结果一致。该结论得到最近邻配位的支持,其中超过60%的Al原子具有四个O作为最近邻。这一发现在探索的温度范围内没有变化。由于存在双环,(AlO4)(5-)单元的连接性由角,边和面共享四面体组成。基于这种结构信息,即键长,配位数,键角分布和环统计,我们的MD模拟使我们能够提出液态Al2O3的可能结构。 [参考:37]

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