Nahar Ridwan, Law Ka Ming, Roden Thomas, Zengel Michael, Lewis Justin, Budhathoki Sujan, Nold Riley, Avlani Harshil, Akintunde Babajide, Derksen Naomi, Hauser Adam J
Department of Physics and Astronomy, University of Alabama, AL, United States.
Data Brief. 2023 Dec 18;52:109971. doi: 10.1016/j.dib.2023.109971. eCollection 2024 Feb.
This paper contains data and results from Density Functional Theory (DFT) investigation of 423 distinct ternary full Heusler alloys, where and represent elements from the D-block of the periodic table and signifies element from main group. The study encompasses both "regular" and "inverse" Heusler phases of these alloys for a total of 846 potential materials. For each specific alloy and each phase, a range of information is provided including total energy, formation energy, lattice constant, total and site-specific magnetic moments, spin polarization as well as total and projected density of electronic states. The aim of creating this dataset is to provide fundamental theoretical insights into ternary Heusler alloys for further theoretical and experimental analysis.
本文包含对423种不同的三元全赫斯勒合金进行密度泛函理论(DFT)研究的数据和结果,其中 和 代表元素周期表D区的元素, 表示主族元素。该研究涵盖了这些合金的“常规”和“反位”赫斯勒相,共计846种潜在材料。对于每种特定合金和每个相,提供了一系列信息,包括总能量、形成能、晶格常数、总磁矩和特定位置磁矩、自旋极化以及电子态的总密度和投影密度。创建此数据集的目的是为三元赫斯勒合金提供基础理论见解,以进行进一步的理论和实验分析。