材料科学
微波食品加热
吸收(声学)
石墨烯
碳纤维
多孔性
碳纳米管
阻抗匹配
纳米技术
堆积
热液循环
氧化物
复合材料
化学工程
电阻抗
复合数
有机化学
计算机科学
工程类
电气工程
化学
冶金
电信
作者
Zhenyang Lin,Yu Hao,Hui Huang,Qingxu He,Gehong Su,Wu Chun,Xin Guo,Lijia Xu,Yongpeng Zhao
标识
DOI:10.1021/acsami.3c13489
摘要
Structural engineering is definitely a promising and effective approach to develop excellent microwave absorbing materials with quantities of advantages. Especially, when carbon materials act as the constituents, the fabricated absorbers are available to gain more prominent absorption performance. However, extra high conductivities and the widespread aggregations and stacking of low-dimensional carbon materials always detrimentally affect the impedance matching and weaken the attenuation capacity, inevitably confining their further absorption applications. Herein, by introducing the amorphous chiral carbon nanocoils to overcome the challenges and achieve the strategies of structure optimization and multicomponent recombination, the reduced graphene oxide/carbon nanocoil/carbon nanotube aerogels were successfully synthesized by a successive hydrothermal method and freeze-drying strategy. The as-obtained aerogels possess a porous architecture that contribute to the extraordinary impedance matching and multiple reflections, which integrate the multifarious dielectric loss mechanisms of diverse carbon materials simultaneously. Benefiting from the tricomponent synergistic effect, the ultralight aerogels reach an outstanding microwave absorption property with an extremely low filler content of only 6 wt %. This work provides a helpful approach to design hierarchical absorbers consisted by multidimensional carbon materials for fantastic microwave absorption.
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