With vigorous developments in nanotechnology, the elaborate regulation of microstructure shows attractive potential in the design of electromagnetic wave absorbers. Herein, a hierarchical porous structure and composite heterogeneous interface are constructed successfully to optimize the electromagnetic loss capacity. The macro-micro-synergistic graphene aerogel formed by the ice templateâassisted 3D printing strategy is cut by silicon carbide nanowires (SiC(nws)) grown in situ, while boron nitride (BN) interfacial structure is introduced on graphene nanoplates. The unique composite structure forces multiple scattering of incident EMWs, ensuring the combined effects of interfacial polarization, conduction networks, and magnetic-dielectric synergy. Therefore, the as-prepared composites present a minimum reflection loss value of -â37.8 dB and a wide effective absorption bandwidth (EAB) of 9.2 GHz (from 8.8 to 18.0 GHz) at 2.5 mm. Besides, relying on the intrinsic high-temperature resistance of SiC(nws) and BN, the EAB also remains above 5.0 GHz after annealing in air environment at 600 °C for 10 h.
Graphene Aerogel Composites with Self-Organized Nanowires-Packed Honeycomb Structure for Highly Efficient Electromagnetic Wave Absorption.
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作者:You Xiao, Ouyang Huiying, Deng Ruixiang, Zhang Qiuqi, Xing Zhenzhong, Chen Xiaowu, Shan Qingliang, Yang Jinshan, Dong Shaoming
| 期刊: | Nano-Micro Letters | 影响因子: | 36.300 |
| 时间: | 2024 | 起止号: | 2024 Oct 21; 17(1):47 |
| doi: | 10.1007/s40820-024-01541-y | ||
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