铁磁性
磁化
矫顽力
材料科学
磁矩
高熵合金
凝聚态物理
冶金
磁场
微观结构
物理
量子力学
作者
Chi‐Hung Lee,Hsu-Hsuan Chin,Kun-Yuan Zeng,Yao‐Jen Chang,An‐Chou Yeh,Jien‐Wei Yeh,Su-Jien Lin,Chun‐Chieh Wang,Uwe Glatzel,E‐Wen Huang
标识
DOI:10.3389/fmats.2022.824285
摘要
Cr and Mn play intriguing roles in determining the magnetic properties of CoFeNi-based high-entropy alloys (HEA). In this study, we tune the stoichiometric Mn composition to systematically explore the magnetic properties of (CoCrFeNi) 1− x Mn x HEAs. We observe a change from ferro-to ferrimagnetism due to the incorporation of Mn atoms into the CoCrFeNi HEA. In addition, we measure an 81% reduction in magnetization with the incorporation of 7.6 (2)% Mn atoms. Such a significant reduction in magnetization cannot be solely explained by the effect of the inversed moments on the Mn atoms. Hence, we propose a mechanism whereby the Mn atoms flip the moments of neighboring atoms, which results in the magnetization reduction observed in the CoFeNi-based HEAs.
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