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用于高性能电磁波吸收的一维镍纳米链@锌掺杂聚吡咯/还原氧化石墨烯复合材料的制备

Fabrication of 1D Ni nanochains@Zn doping polypyrrole/reduced graphene oxide composites for high-performance electromagnetic wave absorption.

作者信息

Wang Haowen, Zhang Hao, Feng Shixuan, Shi Yuxia, Wang Hankun, Zhao Kangze, Nie Aolin, Li Tingxi, Ma Mingliang, Ma Yong

机构信息

School of Material Science and Engineering, Shandong University of Science and Technology, Qingdao 266590, PR China.

Technical Center, Xi'an Aerospace Sunvalor Chemical Co., Ltd, Xi'an 710086, PR China.

出版信息

J Colloid Interface Sci. 2023 Dec 15;652(Pt A):258-271. doi: 10.1016/j.jcis.2023.08.030. Epub 2023 Aug 7.

Abstract

Nowadays, electromagnetic radiation significantly impacts the normal operation of electronic devices and poses risks to human health. To effectively address this problem, the development of composites that exhibit exceptional electrochemical wave absorption through the combination of different components holds great promise. In this study, we have successfully prepared 1D Ni nanochains@Zn doping polypyrrole/reduced graphene oxide (Ni NCs@Z-P/RGO, denoted as R-x) composites using a combination of hydrothermal, solvothermal, in situ polymerization, and physical blending methods. Notably, the R-2 composite demonstrates a remarkable minimum reflection loss (RL) of -63.58 dB at 14.3 GHz, with a thickness of 1.61 mm. Furthermore, the R-2 composite exhibits an impressive effective absorption bandwidth (EAB) of 5.08 GHz (11.92 GHz-17 GHz) at a thickness of 1.67 mm. These outstanding performances can be attributed to the synergistic effect of the different components and a well-thought-out structural design. Moreover, to showcase the practical applicability of the material, we have conducted additional investigations on the reduction of the radar cross-sectional area (RCS). The results strongly demonstrate that the prepared composite material, when used as a coating, effectively reduces the RCS value by up to 26.6 dB m for R-2 at θ = 0°. The experimental methods and simulations presented in this study hold significant potential for application in wave absorption research and practical implementations. Additionally, the prepared Ni NCs@Z-P/RGO composites demonstrate feasibility as wave-absorbing materials for future utilization.

摘要

如今,电磁辐射对电子设备的正常运行产生重大影响,并对人类健康构成风险。为了有效解决这一问题,通过不同组分的组合展现出优异电化学波吸收性能的复合材料的开发具有广阔前景。在本研究中,我们采用水热法、溶剂热法、原位聚合法和物理共混法相结合的方式,成功制备了一维镍纳米链@锌掺杂聚吡咯/还原氧化石墨烯(Ni NCs@Z-P/RGO,记为R-x)复合材料。值得注意的是,R-2复合材料在14.3 GHz处表现出显著的最小反射损耗(RL)为-63.58dB,厚度为1.61 mm。此外,R-2复合材料在厚度为1.67 mm时,展现出令人印象深刻的5.08 GHz(11.92 GHz - 17 GHz)的有效吸收带宽(EAB)。这些优异的性能可归因于不同组分的协同效应以及精心设计的结构。此外,为了展示该材料的实际适用性,我们对雷达散射截面积(RCS)的降低进行了额外研究。结果有力地表明,制备的复合材料用作涂层时,对于R-2在θ = 0°时可有效将RCS值降低高达26.6 dB m。本研究中提出的实验方法和模拟在波吸收研究及实际应用中具有巨大的应用潜力。此外,制备的Ni NCs@Z-P/RGO复合材料作为未来可用的吸波材料具有可行性。

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