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Composition tunable manganese-doped magnetite microwave absorber composites for radio frequency identification communication
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Composition tunable manganese-doped magnetite microwave absorber composites for radio frequency identification communication

Shivam Gupta, Chia-Yen WeiNyan-Hwa Tai
Ceramics International
2022

摘要

A. sol-gel processes B. Composites C. Magnetic properties D. Ferrites Microwave absorption Electronic Optical and Magnetic Materials Ceramics and Composites Process Chemistry and Technology Surfaces Coatings and Films Materials Chemistry
The performance of radio frequency identification (RFID) tags deteriorates in transmitting/receiving characteristics when the tags are mounted on conductive substances such as metals due to the interference from the metal reflected electromagnetic waves. In this work, the manganese-doped magnetite (Mn X Fe 3−X O 4 (0 ≤ X ≤ 1)) nanoparticles with different manganese contents are synthesized by the one-pot sol-gel method for the application of microwave absorber. The effects of Mn doping on the morphology, microstructure, dielectric and magnetic properties, and microwave absorption ability of Mn X Fe 3−X O 4 nanoparticles are investigated. The saturation magnetization and dielectric and magnetic losses of Mn X Fe 3−X O 4 nanoparticles enhance as the Mn doping increases, and achieve the maximum when X = 0.50, and decrease as the Mn doping further continues to augment. At the optimized value of X = 0.50, the reflection and transmission losses are measured to be 17.51 and 3.88 dB, respectively. Furthermore, the nanoparticles are mixed with polytetrafluoroethylene powder and hot-pressed into a composite mat to demonstrate its application as microwave absorber. When the composite mat is inserted between the RFID tag and metal surface, the RFID tag recovers the read count by 86%, which is due to the high absorption ability (80.77%) of the composite mat. Therefore, the composition tunable Mn X Fe 3−X O 4 nanoparticles can be a potential candidate for the application of microwave absorber in wireless communication and electronic industries.

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