Shang Tao, Lu Qingshan, Zhao Jianjun, Chao Luomeng, Qin Yanli, Ren Ningyu, Yun Yuehou, Yun Guohong
Department of Physics Science and Technology, Baotou Teacher's College, Baotou 014030, China.
School of Physical Science and Technology, Inner Mongolia University, Hohhot 010021, China.
Nanomaterials (Basel). 2021 May 29;11(6):1444. doi: 10.3390/nano11061444.
A novel three-dimensional graphene-like networks material (3D-GLN) exhibiting the hierarchical porous structure was fabricated with a large-scale preparation method by employing an ion exchange resin as a carbon precursor. 3D-GLN was first studied as the effective microwave absorbing material. As indicated from the results of the electromagnetic parameter tests, and the minimum reflection loss () of the 3D-GLN reached -34.75 dB at the frequency of 11.7 GHz. To enhance the absorption performance of the nonmagnetic 3D-GLN, the magnetic FeO nanoparticles were loaded on the surface of the 3D-GLN by using the hydrothermal method to develop the 3D-GLN/FeO hybrid. The hybrid exhibited the prominent absorbing properties. Under the matching thickness of 3.0 mm, the minimum value of hybrid reached -46.8 dB at 11.8 GHz. In addition, under the thickness range of 2.0-5.5 mm, the effective absorption bandwidth ( < 10 dB) was 13.0 GHz, which covered part of the C-band and the entire X-band, as well as the entire Ku-band. The significant microwave absorption could be attributed to the special 3D network structure exhibited by the hybrid and the synergistic effect exerted by the graphene and the FeO nanoparticles. As revealed from the results, the 3D-GLN/FeO hybrid could be a novel microwave absorber with promising applications.
采用离子交换树脂作为碳前驱体,通过大规模制备方法制备了一种具有分级多孔结构的新型三维类石墨烯网络材料(3D-GLN)。3D-GLN首次作为有效的微波吸收材料进行研究。电磁参数测试结果表明,3D-GLN在11.7 GHz频率下的最小反射损耗()达到-34.75 dB。为了提高非磁性3D-GLN的吸收性能,采用水热法将磁性FeO纳米颗粒负载在3D-GLN表面,制备了3D-GLN/FeO复合材料。该复合材料表现出优异的吸收性能。在匹配厚度为3.0 mm时,复合材料在11.8 GHz下的最小值达到-46.8 dB。此外,在2.0-5.5 mm的厚度范围内,有效吸收带宽(<10 dB)为13.0 GHz,覆盖了部分C波段、整个X波段以及整个Ku波段。显著的微波吸收可归因于复合材料所呈现的特殊三维网络结构以及石墨烯与FeO纳米颗粒之间的协同效应。结果表明,3D-GLN/FeO复合材料可能是一种具有广阔应用前景的新型微波吸收剂。