五元
高熵合金
金属间化合物
固溶体
热力学
材料科学
二进制数
焓
立方晶系
熵(时间箭头)
熔点
统计物理学
化学物理
化学
结晶学
数学
微观结构
物理
冶金
复合材料
算术
合金
作者
Wei Chen,Antoine Hilhorst,Georgios Bokas,Stéphane Gorsse,Pascal Jacques,Geoffroy Hautier
标识
DOI:10.1038/s41467-023-38423-7
摘要
High-entropy alloys have exhibited unusual materials properties. The stability of equimolar single-phase solid solution of five or more elements is supposedly rare and identifying the existence of such alloys has been challenging because of the vast chemical space of possible combinations. Herein, based on high-throughput density-functional theory calculations, we construct a chemical map of single-phase equimolar high-entropy alloys by investigating over 658,000 equimolar quinary alloys through a binary regular solid-solution model. We identify 30,201 potential single-phase equimolar alloys (5% of the possible combinations) forming mainly in body-centered cubic structures. We unveil the chemistries that are likely to form high-entropy alloys, and identify the complex interplay among mixing enthalpy, intermetallics formation, and melting point that drives the formation of these solid solutions. We demonstrate the power of our method by predicting the existence of two new high-entropy alloys, i.e. the body-centered cubic AlCoMnNiV and the face-centered cubic CoFeMnNiZn, which are successfully synthesized.
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