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镍-碳复合材料微波吸收的机遇与挑战

Opportunities and challenges in microwave absorption of nickel-carbon composites.

作者信息

Deng Jiushuai, Bai Zhongyi, Zhao Biao, Guo Xiaoqin, Zhao Honghui, Xu Hui, Park Chul B

机构信息

School of Chemical Engineering and Technology, China University of Mining & Technology (Beijing), Beijing 100083, China.

Henan Key Laboratory of Aeronautical Materials and Application Technology, School of Materials Science and Engineering, Zhengzhou University of Aeronautics, Zhengzhou, Henan 450046, China.

出版信息

Phys Chem Chem Phys. 2021 Sep 29;23(37):20795-20834. doi: 10.1039/d1cp03522c.

Abstract

In recent years, the problem of electromagnetic wave (EMW) pollution has attracted more and more attention with the development of science and technology. In order to solve this complex problem, the research and development of EMW-absorbing materials is crucial. The new absorbing materials should have the characteristics of light weight, high efficiency, wide bandwidth, environmental protection, oxidation resistance, and other characteristics. Traditional single-phase Ni materials exhibit remarkable ferromagnetic behavior and double-loss mechanisms (dielectric loss and magnetic loss), and are considered as efficient EMW absorbers. However, under the action of EMWs, especially in the GHz frequency band, Ni materials tend to produce an eddy current effect, which limits their application prospects. For Ni-based materials, there is much interest in modifying the composite materials by designing a hierarchical structure for their preparation. Traditional, single-phase, carbon-based materials have been widely used in related fields because of their light weight and good conductivity. However, a single-loss mechanism will affect the impedance matching of carbon materials, thus affecting their application in the field of absorbing waves. For carbon materials, people use them as a filler or matrix material to fabricate composites with metals, metal oxides, or polymer materials to obtain carbon-containing absorbing materials. This paper reviews the evaluation and design principles of the absorbing properties of EMW-absorbing materials. Then, the progress of modified single-phase Ni-based materials (designed materials with 0D, 1D, 2D, and 3D structures), the development of carbon materials (carbon black, carbon nanotubes, carbon fiber, graphite oxide, reduced graphene oxide, and biomedical carbon), and the research progress of Ni-C composite materials (the composite material formed by nickel and carbon) are reviewed. The ultimate goal is to obtain absorbers with light weight, strong absorbing ability, and a wide frequency band. In particular, Ni-MXene, Ni-biomedical carbon, and Ni-multiphase carbon composites are the target direction for designing new and high efficiency EMW absorbers. Finally, the basic challenges and opportunities in this field are discussed.

摘要

近年来,随着科学技术的发展,电磁波(EMW)污染问题越来越受到关注。为了解决这一复杂问题,研发吸波材料至关重要。新型吸波材料应具备重量轻、效率高、带宽宽、环保、抗氧化等特性。传统的单相镍材料表现出显著的铁磁行为和双损耗机制(介电损耗和磁损耗),被认为是高效的电磁波吸收体。然而,在电磁波作用下,尤其是在吉赫兹频段,镍材料容易产生涡流效应,这限制了它们的应用前景。对于镍基材料,人们对通过设计分级结构来制备复合材料进行改性很感兴趣。传统的单相碳基材料因其重量轻和良好的导电性而在相关领域得到广泛应用。然而,单一的损耗机制会影响碳材料的阻抗匹配,从而影响其在吸波领域的应用。对于碳材料,人们将其用作填料或基体材料,与金属、金属氧化物或聚合物材料制备复合材料,以获得含碳吸波材料。本文综述了吸波材料吸波性能的评价和设计原则。然后,综述了改性单相镍基材料(具有0D、1D、2D和3D结构的设计材料)的研究进展、碳材料(炭黑、碳纳米管、碳纤维、氧化石墨、还原氧化石墨烯和生物医用碳)的发展以及镍-碳复合材料(镍和碳形成的复合材料)的研究进展。最终目标是获得重量轻、吸收能力强、频带宽的吸收体。特别是,镍-碳化钛铝 MAX相陶瓷、镍-生物医用碳和镍-多相碳复合材料是设计新型高效电磁波吸收体的目标方向。最后,讨论了该领域的基本挑战和机遇。

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