Login / Signup

Rationally designed structure of mesoporous carbon hollow microspheres to acquire excellent microwave absorption performance.

Yuxuan QinMuqun WangWei GaoShaofeng Liang
Published in: RSC advances (2021)
In this study, we used a novel and facile hard-template etching method to manufacture mesoporous carbon hollow microspheres (MCHMs). We prove that the dielectric ability and microwave absorption of MCHMs can be adjusted by structural characteristics. When the average particle size of MCHMs is 452 nm, the paraffin composite material mixed with 10 wt% MCHMs can achieve a maximum reflection loss value of -51 dB with a thickness of 4.0 mm at 7.59 GHz. When the average particle size of MCHMs is 425 nm, the effective absorption bandwidth of the paraffin composite material mixed with 10 wt% MCHMs can achieve a broad bandwidth of 7.14 GHz with a thickness of 2.5 mm. Compared with other microwave absorbers, MCHMs possess high microwave absorption capacity and broad microwave absorption bandwidth with as low as a 10 wt% filler ratio. This excellent microwave absorption performance is due to the internal cavity and the mesoporous shell of MCHMs. By rationally designing the structure of MCHMs, excellent microwave absorption performance can be acquired. Meanwhile, this design concept based on a rational design of spherical structure can be extended to other spherical absorbers.
Keyphrases
  • radiofrequency ablation
  • molecularly imprinted
  • metal organic framework
  • highly efficient
  • photodynamic therapy
  • optical coherence tomography
  • mass spectrometry
  • gold nanoparticles
  • high temperature