Macroscopic Electromagnetic Cooperative Network-Enhanced MXene/Ni Chains Aerogel-Based Microwave Absorber with Ultra-Low Matching Thickness

被引:9
|
作者
Fei Pan [1 ]
Yanping Rao [2 ]
Dan Batalu [3 ]
Lei Cai [1 ]
Yanyan Dong [1 ]
Xiaojie Zhu [1 ]
Yuyang Shi [1 ]
Zhong Shi [2 ]
Yaowen Liu [2 ]
Wei Lu [1 ]
机构
[1] Shanghai Key Lab.of D&A for Metal-Functional Materials, School of Materials Science & Engineering, Tongji University
[2] Shanghai Key Laboratory of Special Artificial Microstructure Materials and Technology, School of Physics Science and Engineering, Tongji University
[3] Materials Science and Engineering Faculty, Politehnica University of Bucharest
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TQ427.26 []; O441.4 [电磁波与电磁场];
学科分类号
摘要
Electromagnetic cooperative strategy has been presented as a mainstream approach that can effectively optimize the matching thickness of dielectric loss dominant system. However, it is still challenging for dielectric–magnetic loss coexisting-type absorber to develop electromagnetic wave(EMW) performance with ultra-low matching thickness(≤ 1 mm). Breaking the limitation of traditional electromagnetic response at microscopic/mesoscopic scale, a ficus microcarpa-like magnetic aerogel with macroscopical electromagnetic cooperative effect was fabricated through highly oriented self-assembly engineering. The highly oriented Ni chains with unique macroscopic morphology(~ 1 cm in length) were achieved via a special magnetic field-induced growth. Strong magnetic coupling was observed in the Ni chains confirmed by the micromagnetic simulation. The deductive calculation validates that maintaining high value of electromagnetic parameters at high frequencies is the prerequisites of ultrathin absorber. The electromagnetic cooperative networks with uninterrupted and dual pathways spread through the entire aerogel skeleton, resulting in the impressive permittivity even at high frequencies. Consequently, the aerogel exhibits a remarkable EMW performance at an ultrathin thickness of 1 mm. Thus, based on the modulation of electromagnetic parameters, this work proposed a macroscopic ordered structure with the electromagnetic cooperative effect useful to develop a suitable strategy for achieving ultrathin EMW absorbers.
引用
收藏
页码:289 / 305
页数:17
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