Deng Lanlan, Zhang Jiabin, Shu Ruiwen
State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines, Anhui University of Science and Technology, Huainan 232001, China.
School of Chemical Engineering, Anhui University of Science and Technology, Huainan 232001, China.
J Colloid Interface Sci. 2021 Nov 15;602:282-290. doi: 10.1016/j.jcis.2021.06.029. Epub 2021 Jun 8.
Developing light-weight and high-efficiency electromagnetic wave (EMW) absorbers has been considered as an effective strategy to resolve the electromagnetic radiation pollution problem. Herein, nitrogen-doped reduced graphene oxide/tin oxide (NRGO/SnO) composite aerogels were facilely prepared through the hydrothermal process and subsequent lyophilization treatment. Morphological characterization results manifested that the attained NRGO/SnO composite aerogels possessed unique three-dimensional (3D) porous network structure constituted by the tiny SnO nanoparticles decorated wrinkled surfaces of flake-like NRGO. Moreover, excellent EMW absorption performance could be achieved through facilely regulating the additive volumes of ethylenediamine and filler contents. Impressively, the composite aerogel with a doped nitrogen concentration of 6.5 wt% displayed the optimal minimum reflection loss of -62.3 dB at a matching thickness of 3.5 mm and the broadest effective absorption bandwidth of 5.1 GHz under an ultrathin thickness of merely 1.6 mm. Furthermore, the as-synthesized composite aerogels showed a light-weight characteristic with the low bulk density of 19.9-25.7 mg·cm. Additionally, the potential EMW absorption mechanisms of obtained composite aerogels were revealed, which were mainly ascribed to the unique 3D porous network structure, synergistic effects between conduction loss and polarization loss, as well as the balanced attenuation loss and impedance matching. This work could be valuable for the structural design and fabrication of 3D graphene-based dielectric composites as light-weight and high-efficiency EMW absorbers.
开发轻质高效的电磁波(EMW)吸收剂被认为是解决电磁辐射污染问题的有效策略。在此,通过水热法和随后的冻干处理,轻松制备了氮掺杂还原氧化石墨烯/氧化锡(NRGO/SnO)复合气凝胶。形态表征结果表明,所制备的NRGO/SnO复合气凝胶具有独特的三维(3D)多孔网络结构,该结构由装饰在片状NRGO褶皱表面的微小SnO纳米颗粒构成。此外,通过轻松调节乙二胺的添加量和填料含量,可以实现优异的EMW吸收性能。令人印象深刻的是,氮掺杂浓度为6.5 wt%的复合气凝胶在3.5 mm的匹配厚度下显示出-62.3 dB的最佳最小反射损耗,在仅1.6 mm的超薄厚度下具有5.1 GHz的最宽有效吸收带宽。此外,所合成的复合气凝胶具有轻质特性,体密度低至19.9 - 25.7 mg·cm 。此外,还揭示了所获得的复合气凝胶潜在的EMW吸收机制,这主要归因于独特的3D多孔网络结构、传导损耗和极化损耗之间的协同效应,以及平衡的衰减损耗和阻抗匹配。这项工作对于作为轻质高效EMW吸收剂的3D石墨烯基介电复合材料的结构设计和制造具有重要价值。