4.6 Article

Ultrabroad band microwave absorption from hierarchical MoO3/TiO2/Mo2TiC2Tx hybrids via annealing treatment

期刊

JOURNAL OF ADVANCED CERAMICS
卷 11, 期 9, 页码 1466-1478

出版社

SPRINGER
DOI: 10.1007/s40145-022-0624-0

关键词

MoO3/TiO2/Mo2TiC2Tx composites; Mo2TiC2Tx MXene; electromagnetic wave absorption (EMA); impedance matching; interfacial polarization; dielectric loss

资金

  1. National Natural Science Foundation of China [U2004177, U21A2064]
  2. Outstanding Youth Fund of Henan Province [212300410081]
  3. Support Plan for Scientific and Technological Innovation Talents in Colleges and Universities of Henan Province [22HASTIT001]
  4. Research and Entrepreneurship Start-up Projects for Overseas Returned Talents

向作者/读者索取更多资源

This study presents the preparation of MoO3/TiO2/Mo2TiC2Tx hybrids by growing MoO3 and TiO2 oxides on Mo2TiC2Tx MXene. The hybrids exhibit excellent electromagnetic wave absorption performance and a broad effective absorption bandwidth when annealed at the appropriate temperature.
Two-dimensional (2D) transition metal carbide MXene-based materials hold great potentials applied for new electromagnetic wave (EMW) absorbers. However, the application of MXenes in the field of electromagnetic wave absorption (EMA) is limited by the disadvantages of poor impedance matching, single loss mechanism, and easy oxidation. In this work, MoO3/TiO2/Mo2TiC2Tx hybrids were prepared by the annealing-treated Mo2TiC2Tx MXene and uniform MoO3 and TiO2 oxides in-situ grew on Mo2TiC2Tx layers. At the annealing temperature of 300 degrees C, the minimum reflection loss (RLmin) value of MoO3/TiO2/Mo2TiC2Tx reaches -30.76 dB (2.3 mm) at 10.18 GHz with a significantly broadening effective absorption bandwidth (EAB) of 8.6 GHz (1.8 mm). The in-situ generated oxides creating numerous defects and heterogeneous interfaces enhance dipolar and interfacial polarizations and optimize the impedance matching of Mo2TiC2Tx. Considering the excellent overall performance, the MoO3/TiO2/Mo2TiC2Tx hybrids can be a promising candidate for EMA.

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