材料科学
铁磁性
密度泛函理论
凝聚态物理
兴奋剂
合金
从头算量子化学方法
立方晶系
磁矩
从头算
过渡金属
费米能级
电子
计算化学
冶金
分子
物理
化学
量子力学
光电子学
生物化学
催化作用
作者
Tingting Zuo,Michael C. Gao,Lizhi Ouyang,Xiao Yang,Yongqiang Cheng,Rui Feng,Shuying Chen,Peter K. Liaw,Jeffrey A. Hawk,Yong Zhang
标识
DOI:10.1016/j.actamat.2017.03.013
摘要
Magnetic materials with excellent performances are desired for functional applications. Based on the high-entropy effect, a system of CoFeMnNiX (X = Al, Cr, Ga, and Sn) magnetic alloys are designed and investigated. The dramatic change in phase structures from face-centered-cubic (FCC) to ordered body-centered-cubic (BCC) phases, caused by adding Al, Ga, and Sn in CoFeMnNiX alloys, originates from the potent short-range chemical order in the liquid state predicted by ab initio molecular dynamics (AIMD) simulations. This phase transition leads to the significant enhancement of the saturation magnetization (Ms), e.g., the CoFeMnNiAl alloy has Ms of 147.86 Am2/kg. First-principles density functional theory (DFT) calculations on the electronic and magnetic structures reveal that the anti-ferromagnetism of Mn atoms in CoFeMnNi is suppressed especially in the CoFeMnNiAl HEA because Al changes the Fermi level and itinerant electron-spin coupling that lead to ferromagnetism.
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