材料科学
晶体结构
高熵合金
格子(音乐)
失真(音乐)
统计物理学
纳米技术
结晶学
微观结构
冶金
物理
光电子学
放大器
化学
CMOS芯片
声学
作者
Hang Wang,Quanfeng He,Xiang Gao,Yinghui Shang,Wenqing Zhu,Weijiang Zhao,Zhaoqi Chen,Hao Gong,Yong Yang
标识
DOI:10.1002/adma.202305453
摘要
Since 2004, the design of high entropy alloys (HEAs) has generated significant interest within the materials science community due to their exceptional structural and functional properties. By incorporating multiple principal elements into a common lattice, it is possible to create a single-phase crystal with a highly distorted lattice. This unique feature enables HEAs to offer a promising combination of mechanical and physical properties that are not typically observed in conventional alloys. In this article, an extensive overview of multifunctional HEAs that exhibit severe lattice distortion is provided, covering the theoretical models that are developed to understand lattice distortion, the experimental and computational methods employ to characterize lattice distortion, and most importantly, the impact of severe lattice distortion on the mechanical, physical and electrochemical properties of HEAs. Through this review, it is hoped to stimulate further research into the study of distorted lattices in crystalline solids.
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