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首页> 外文期刊>Applied Surface Science >Improvement of interfacial polarization and impedance matching for two- dimensional leaf-like bimetallic (Co, Zn) doped porous carbon nanocomposites with broadband microwave absorption
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Improvement of interfacial polarization and impedance matching for two- dimensional leaf-like bimetallic (Co, Zn) doped porous carbon nanocomposites with broadband microwave absorption

机译:宽带微波吸收改善二维叶状双金属(Co,Zn)掺杂多孔碳纳米复合材料的界面极化和阻抗匹配

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摘要

Two-dimensional (2D) carbon matrix nanocomposites are promising for efficient microwave absorption on account of the large specific surface area, the small size effect of nanoparticles and the multiple attenuation mechanisms to electromagnetic waves. Herein, we prepared innovative two-dimensional leaf-like bimetallic (Co, Zn) doped porous carbon nanocomposites (BPCNs) via a simple aqueous-phase self-assembly process and subsequent heat treatment. An in-depth study of the relative metal content on the leaf-like morphology, porous structure and microwave absorption properties has been carried out in detail. The research results show that the BPCNs possess large surface areas and abundant mesoporous, and metallic nanoparticles can be well dispersed in the carbon skeleton after high-temperature calcination. Moreover, the BPCNs exhibited excellent microwave absorption properties with the maximum effective absorption bandwidth (EAB) of 5.7 GHz at the thickness of 2.5 mm when Co relative content increased to 40% (BPCN-0.4), and the minimum reflection loss (RL) can reach to -45.2 dB. The broad EAB and strong RL value can be attributed to the small size effect of Co and Zn nanoparticles, the improved interfacial polarization and the optimized impedance matching. Considering that, the 2D leaf-like BPCNs can be an innovative candidate as lightweight and efficient microwave absorber.
机译:二维(2D)碳基纳米复合材料因其大的比表面积,纳米粒子的小尺寸效应以及对电磁波的多重衰减机制,有望有效地吸收微波。在这里,我们通过简单的水相自组装过程和随后的热处理制备了创新的二维叶状双金属(Co,Zn)掺杂多孔碳纳米复合材料(BPCNs)。详细研究了相对金属含量对叶状形态,多孔结构和微波吸收性能的影响。研究结果表明,BPCNs表面积大,介孔丰富,高温煅烧后金属纳米颗粒可以很好地分散在碳骨架中。此外,当钴的相对含量增加到40%(BPCN-0.4)时,BPCN在2.5 mm的厚度下具有5.7 GHz的最大有效吸收带宽(EAB),具有出色的微波吸收性能,并且最小的反射损耗(RL)可以达到-45.2 dB。宽的EAB和强大的RL值可归因于Co和Zn纳米粒子的小尺寸效应,改进的界面极化和优化的阻抗匹配。考虑到这一点,二维叶片状BPCN可以作为轻巧高效的微波吸收器的创新选择。

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