4.7 Article

Synthesis of MnxOy@C hybrid composites for optimal electromagnetic wave absorption capacity and wideband absorption

Journal

JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY
Volume 103, Issue -, Pages 157-164

Publisher

JOURNAL MATER SCI TECHNOL
DOI: 10.1016/j.jmst.2021.06.034

Keywords

Manganese oxide/carbon composites; Dielectric loss; Relaxation time; Electromagnetic wave absorption

Funding

  1. National Natural Science Foundation of China [51407134]
  2. Natural Science Foundation of Shandong Province [ZR2019YQ24]
  3. Taishan Scholars and Young Experts Program of Shandong Province [tsqn202103057]
  4. China Postdoctoral Science Foundation [2016M590619]
  5. Natural Science Foundation of Heilongjiang Province [ZD2020E009]
  6. Key Laboratory of Engineering Dielectrics and Its Application (Harbin University of Science and Technology), Ministry of Education [KFZ1803]
  7. Qingchuang Talents Induction Program of Shandong Higher Education Institution (Research and Innovation Team of Structural-Functional Polymer Composites)
  8. Thousand Talents Plan
  9. World-Class University and Discipline
  10. Taishan Scholar's Advantageous and Distinctive Discipline Program of Shandong Province
  11. World-Class Discipline Program of Shandong Province

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A series of manganese oxides/porous carbon hybrid composites were obtained by a two-step process, and it was found that different manganese oxides have different effects on the dielectric properties of absorbers. The addition of porous carbon is crucial for enhancing the EMA performance of composites, improving impedance matching and conductive loss.
The fabrication of high-performance electromagnetic (EM) wave absorption (EMA) materials is an effective strategy to deal with ever-increasing EM pollution. In this work, a series of manganese oxides/porous carbon (MnxOy@C) hybrid composites are obtained by a two-step process. It is revealed that different manganese oxides play various influence on the dielectric properties of absorbers. Owing to the moderate complex permittivity of MnO@C hybrid composites, the optimal reflection loss could reach as high as -76.0 dB at the matching thickness of 2.0 mm with 5.2 GHz of effective absorption bandwidth at thickness of 2.1 mm. We demonstrated that the addition of porous carbon is vital for enhancing EMA performance of composites, which not only coordinates impedance matching allowing more EM waves enter the absorber, but also provides the path for electron movement, thus profiting conductive loss. Besides, different heterogeneous interfaces including porous carbon, manganese oxide and so on, are conducive to contribution of interface polarization. The most noteworthy is ingenious design of composite materials and systematic research of EM energy attenuation mechanism in this work will provide the possibility to realize high-performance EMA. (C) 2022 Published by Elsevier Ltd on behalf of The editorial office of Journal of Materials Science & Technology.

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