Lupo Pasini Massimiliano, Samolyuk German, Eisenbach Markus, Choi Jong Youl, Yin Junqi, Yang Ying
Oak Ridge National Laboratory, Computational Sciences and Engineering Division, Oak Ridge, 37831, USA.
Oak Ridge National Laboratory, Materials Sciences and Technology Division, Oak Ridge, 37831, USA.
Sci Data. 2024 Aug 22;11(1):907. doi: 10.1038/s41597-024-03720-3.
We present four open-source datasets that provide results of density functional theory (DFT) calculations of ground-state properties of refractory solid solution binary alloys niobium-tantalum (NbTa), niobium-vanadium (NbV), tantalum-vanadium (TaV), and ternary alloys NbTaV ordered in body-centered-cubic (BCC) structures with 128 Bravais lattice sites. The first-principles code used to run the calculations is the Vienna Ab-Initio Simulation Package. The calculations have been collected by uniformly sampling chemical compositions across the entire compositional range. For each chemical composition, the calculations have been run for 100 randomized arrangements of the constituents on the BCC lattice sites. This sampling methodology resulted in running DFT simulations for a total of 3,100 randomized atomic configurations over 31 chemical compositions for each of the three binary alloys Nb-Ta, Nb-V, Ta-V, and a total of 10,500 randomized atomic structures over 105 chemical compositions for the ternary alloys Nb-Ta-V. For each atomic configuration, geometry optimization has been performed, and the data released contains information about each step of geometry optimization for each atomic configuration.
我们展示了四个开源数据集,这些数据集提供了难熔固溶体二元合金铌 - 钽(NbTa)、铌 - 钒(NbV)、钽 - 钒(TaV)以及体心立方(BCC)结构中具有128个布拉菲晶格点的有序三元合金NbTaV的基态性质的密度泛函理论(DFT)计算结果。用于运行这些计算的第一性原理代码是维也纳从头算模拟包。这些计算是通过在整个成分范围内均匀采样化学成分来收集的。对于每种化学成分,已经针对BCC晶格位点上成分的100种随机排列进行了计算。这种采样方法导致对Nb - Ta、Nb - V、Ta - V这三种二元合金的31种化学成分总共运行了3100种随机原子构型的DFT模拟,以及对三元合金Nb - Ta - V的105种化学成分总共运行了10500种随机原子结构的模拟。对于每种原子构型,都进行了几何优化,并且发布的数据包含了每种原子构型几何优化每个步骤的信息。