JOURNAL ARTICLE

High‐Temperature Electromagnetic Wave Absorption Properties of ZnO / ZrSiO 4 Composite Ceramics

Luo KongXiaowei YinQuan LiFang YeYe LiuG. DuoXiaowen Yuan

Year: 2013 Journal:   Journal of the American Ceramic Society Vol: 96 (7)Pages: 2211-2217   Publisher: Wiley

Abstract

Owing to the widespread presence of electromagnetic interferences, it is necessary to develop new materials with excellent high‐temperature electromagnetic wave ( EM ) absorption properties. In the present work, ZnO is infiltrated into porous ZrSiO 4 substrates to form ZnO / ZrSiO 4 composite ceramics using sol‐gel process. The doping of aluminum results in the improvement of electrical conductivity and the significant change in the morphology of ZnO . With the increase in environment temperature during measurement, the permittivity of the composite ceramics increases first and then decreases dramatically, which is attributed to the change in conductive loss. The electrical conductivity increases with increasing measurement temperature. However, the concentration of oxygen vacancies decreases under air atmosphere when the measurement temperature increases continuously, which results in the reduction in conductivity. Therefore, permittivities of the undoped and doped ceramics measured at 673 K are higher than the ones at the other temperatures. The composite ceramics maintain a relatively high EM absorption coefficient, low reflection coefficient ( RC ), and wide effective absorption bandwidth at environment temperatures up to 773 K. As a result, we conclude that the ZnO / ZrSiO 4 composite ceramics exhibit a promising prospect as a kind of high‐temperature EM absorbing material.

Keywords:
Materials science Permittivity Ceramic Composite number Attenuation coefficient Electrical resistivity and conductivity Temperature coefficient Porosity Doping Absorption (acoustics) Conductivity Reflection coefficient Reflection loss Composite material Dielectric Optoelectronics Optics Chemistry

Metrics

63
Cited By
1.12
FWCI (Field Weighted Citation Impact)
25
Refs
0.77
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Electromagnetic wave absorption materials
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Microwave Dielectric Ceramics Synthesis
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Advanced Antenna and Metasurface Technologies
Physical Sciences →  Engineering →  Aerospace Engineering

Related Documents

JOURNAL ARTICLE

Effect of Aluminum Doping on Microwave Absorption Properties of ZnO / ZrSiO 4 Composite Ceramics

Luo KongXiaowei YinLitong ZhangLaifei Cheng

Journal:   Journal of the American Ceramic Society Year: 2012 Vol: 95 (10)Pages: 3158-3165
JOURNAL ARTICLE

Microwave Dielectric Properties of Ultralow‐Temperature Cofirable Ba 3 V 4 O 13 Ceramics

Suresh Elattuvalappil KalathilUnnimaya Avanoor NeelakantanR. Ratheesh

Journal:   Journal of the American Ceramic Society Year: 2014 Vol: 97 (5)Pages: 1530-1533
JOURNAL ARTICLE

Improved High‐ Q Microwave Dielectric Ceramics in CuO ‐Doped BaTi 4 O 9 – BaZn 2 Ti 4 O 11 System

Sheng Quan YuBin TangXiao ZhangShu Ren ZhangXiao‐Hua Zhou

Journal:   Journal of the American Ceramic Society Year: 2012 Vol: 95 (6)Pages: 1939-1943
JOURNAL ARTICLE

Tribological Properties of Si 3 N 4 / SiC Nano–Nano Composite Ceramics

Jung‐Hoo ShinB. Venkata Manoj KumarJae‐Hee KimSeong‐Hyeon Hong

Journal:   Journal of the American Ceramic Society Year: 2011 Vol: 94 (11)Pages: 3683-3685
© 2026 ScienceGate Book Chapters — All rights reserved.