4.7 Article

Electrospun generation of Ti3C2Tx MXene@graphene oxide hybrid aerogel microspheres for tunable high-performance microwave absorption

Journal

CHEMICAL ENGINEERING JOURNAL
Volume 391, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2019.123512

Keywords

Graphene oxide; Ti3C2Tx MXene; Hybrid aerogel microspheres; Stacking assembly; Microwave absorption

Funding

  1. National Science Foundation of China [51573149, 51903213]
  2. Science and Technology Planning Project of Sichuan Province [2018GZ0132, 2018GZ0427]

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Constructing different 2D nano-materials into hybrids is an effective way to fabricate high-performance mi- crowave absorbing (MA) materials. The formed heterointerfaces offers new loss mechanisms to make up the shortages of sole material in attenuating electromagnetic energy. For practical utilizations, microwave absorbers perform at low-frequency band with light-weight and thinness are more desirable. Here, hybrids aerogel mi- crospheres constructed from graphene oxide (GO) and Ti3C2Tx MXene are manufactured by rapid freezing as- sisted electrostatic-spinning. Combined with the disparities of conductivity between Ti3C2Tx MXene and GO, and the newly generated heterointerfaces and abundant surface groups, the Ti3C2Tx MXene@GO hybrid aerogel microspheres (M@GAMS) exhibit optimized impedance matching and improved MA performance. Besides, the unique aerogel structure not only offers light weight merit for this absorber but also elongates the attenuating paths when electromagnetic waves inject in. With a rather low filler loading of 10.0 wt% and a thickness of 1.2 mm, the optimized M@GAMS exhibit reflection loss (RL) of-49.1 dB at 14.2 GHz. More importantly, the M@GAMS present effective MA at S-band, and the RL reaches-38.3 dB at 2.1 GHz with a thickness of 5.0 mm. We believe the M@GAMS provides new opportunities for designing efficient MA absorbers, especially for the low-frequency.

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