4.8 Article

High-Quality Ferromagnet Fe3GeTe2 for High-Efficiency Electromagnetic Wave Absorption and Shielding with Wideband Radar Cross Section Reduction

Journal

ACS NANO
Volume 16, Issue 5, Pages 7861-7879

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.2c00512

Keywords

Fe3GeTe2; high-quality; electrical and magnetic; absorption and shielding; wideband RCS reduction

Funding

  1. National Key R&D Program of China [MoST 2020YFA0711500]
  2. National Natural Science Foundation of China (NSFC) [21875114, 51373078, 51422304]
  3. 111 project [B18030]
  4. The Fundamental Research Funds for the Central Universities, Nankai University [023/63201066]
  5. China Postdoctoral Science Foundation [023/BS6619018]

Ask authors/readers for more resources

A high-quality Fe3GeTe2 single crystal with good electrical and magnetic properties has been prepared by solid-phase sintering and recrystallization method, and it shows potential for electromagnetic wave absorption and shielding.
A high-quality Fe3GeTe2 single crystal with good electrical, magnetic, and electromagnetic wave absorption and shielding properties was prepared in a large quantity (10 g level) by solid-phase sintering and recrystallization method, which would promote its in-depth research and practical application. It has good room-temperature electrical properties with a mobility of 42 cm(2)/V.s, a sheet (bulk) carrier concentration of +1.64 X 10(18)/cm(2) (+3.28 X 10(20) /cm(3)), and a conductivity of 2196.35 S/cm. Also, a Curie temperature of 238 K indicates the high magnetic transition temperature and a paramagnetic Curie temperature of 301 K shows the large ferromagnetic-paramagnetic transition zone induced by the residual short-range ferromagnetic domains. Particularly, Fe3GeTe2 is in a loosely packed state when used as a loss agent; the electromagnetic wave absorption with a reflection loss of -34.7 dB at 3.66 GHz under thin thickness was shown. Meanwhile, the absorption band can be effectively regulated by varying the thickness. Moreover, Fe3GeTe2 in a close-packed state exhibits terahertz shielding values of 75.1 and 103.2 dB at very thin thicknesses of 70 and 380 mu m, and the average shielding value is higher than 47 dB, covering the entire bandwidth from 0.1 to 3.0 THz. Furthermore, by using Fe3GeTe2 as a patch, the wideband radar cross-section can be effectively reduced by up to 33 dBsm. Resultantly, Fe3GeTe2 will be a promising candidate in the electromagnetic protection field.

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