超短脉冲
焦耳加热
电磁辐射
焦耳(编程语言)
材料科学
相(物质)
反射(计算机编程)
偶极子
吸收(声学)
格子(音乐)
波传播
光电子学
电子
带宽(计算)
反射损耗
电磁脉冲
波长
光学
电磁学
凝聚态物理
波形
电磁场
散射
极高频率
相位匹配
作者
Yuhang Bai,Yang Yang,Zelong Yao,Jingrui Li,Jia Liu,Peipei Wang,Huiling Du,Xing Zhao,Laifei Cheng
摘要
Abstract MAX phases can benefit from high‐entropy (HE) effects to enhance their electromagnetic (EM) wave absorption properties. This study introduces Joule heating‐driven ultrafast synthesis (JHUS) for the first time to synthesize the novel HE‐MAX phase (Ti 1/5 Nb 1/5 Ta 1/5 Hf 1/5 V 1/5 ) 2 AlC at 1200°C in 20 s. The high‐entropy effects, combined with the JHUS, lead to the formation of structural defects within the HE‐MAX phase, such as lattice distortions, dislocations, and point defects. These structural defects play a crucial role in promoting dipole polarization. The high aspect ratio of the layered structure promotes electron transfer and interfacial polarization. These effects result in a significant improvement in EM wave absorption, with a minimum reflection loss of −46.07 dB at 2.7 mm and a 4.08 GHz absorption bandwidth at 1.5 mm. This study demonstrates an efficient and rapid method for synthesizing HE‐MAX phases and explores the role of high‐entropy engineering in optimizing their EM wave absorption.
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