Constructing repairable meta-structures of ultra-broad-band electromagnetic absorption from three-dimensional printed patterned shells

Wei Li Song*, Zhili Zhou, Li Chen Wang, Xiao Dong Cheng, Mingji Chen, Rujie He, Haosen Chen, Yazheng Yang, Daining Fang

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

92 引用 (Scopus)

摘要

Ultra-broad-band electromagnetic absorption materials and structures are increasingly attractive for their critical role in competing with the advanced broad-band electromagnetic detection systems. Mechanically soft and weak wax-based materials composites are known to be insufficient to serve in practical electromagnetic absorption applications. To break through such barriers, here we developed an innovative strategy to enable the wax-based composites to be robust and repairable meta-structures by employing a three-dimensional (3D) printed polymeric patterned shell. Because of the integrated merits from both the dielectric loss wax-based composites and mechanically robust 3D printed shells, the as-fabricated meta-structures enable bear mechanical collision and compression, coupled with ultra-broad-band absorption (7-40 and 75-110 GHz, reflection loss smaller than -10 dB) approaching state-of-the-art electromagnetic absorption materials. With the assistance of experiment and simulation methods, the design advantages and mechanism of employing such 3D printed shells for substantially promoting the electromagnetic absorption performance have been demonstrated. Therefore, such universal strategy that could be widely extended to other categories of wax-based composites highlights a smart stage on which high-performance practical multifunction meta-structures with ultra-broad-band electromagnetic absorption could be envisaged.

源语言英语
页(从-至)43179-43187
页数9
期刊ACS applied materials & interfaces
9
49
DOI
出版状态已出版 - 13 12月 2017

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