4.7 Article

Ultralight MOF-Derived Ni3S2@N, S-Codoped Graphene Aerogels for High-Performance Microwave Absorption

期刊

NANOMATERIALS
卷 12, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/nano12040655

关键词

graphene aerogels; Ni-MOF; Ni3S2; microwave absorption

资金

  1. National Natural Science Foundation of China [11904141, 22105060]
  2. Natural Science Foundation of Jiangsu Province [BK20191031]

向作者/读者索取更多资源

By using metal-organic frameworks, an ultralight Ni3S2@N, S-codoped graphene aerogel with high-performance microwave absorption characteristics was fabricated, with features such as good impedance matching and multiple losses synergistic effects. It exhibits excellent absorption performance, with EAB covering the entire Ku band and adjustable absorption bandwidth.
To develop high-performance microwave absorption materials with the features of lightweight, thin thickness, broad bandwidth, and strong absorption, an ultralight Ni3S2@N, S-codoped graphene aerogel with a density of 13.5 mg/cm(3) has been fabricated by the use of metal-organic frameworks (MOFs) to directly initiate the gelation of graphene oxide strategy. In such a strategy, dual-functional 1D Ni-MOF nanorods not only act as the gelation agent but also afford the doping elements (N and S) originated from the organic species and the precursor for metal sulfide. Due to the synergistic effects of good impedance matching and multiple losses, the optimal reflection loss (RL) of as-prepared Ni3S2@N, S-codoped graphene aerogel reaches -46.9 dB at 17.1 GHz with only 2.0 mm and ultralow filling content (1.75 wt%). The maximum effective absorption bandwidth (EAB) reaches 6.3 GHz (11.7-18.0 GHz) at 2.38 mm, covering the whole Ku band. Moreover, the value of EAB with the RL less than -30 dB can be tuned to 12.2 GHz (5.8-18 GHz) at the absorber thickness ranging from 1.9 to 5.0 mm. This work provides insight for rational design and fabrication of multicomponent-containing graphene aerogels, showing the potential application in lightweight and high-performance microwave absorption.

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