A novel low-loss microwave dielectric material MgZrNb2O8 was reported for the first time. Single-phase MgZrNb2O8 was prepared by a conventional mixed-oxide route and sintered in the temperature range of 1280-1360 degrees C. The microstructure and microwave dielectric properties were investigated systematically. The X-ray diffraction results showed that all samples exhibit a single wolframite structure. When the sintering temperature was lower than 1340 degrees C, the Q x f value mainly depended on the relative density. However, when the sintering temperature was above 1340 degrees C, the Q x f value mainly relied on the grain morphology in addition to the density. The MgZrNb2O8 ceramic sintered at 1340 degrees C for 4 h exhibited excellent microwave dielectric of epsilon(r)=26, Q x f= 120,816 GHz (where f=6.85 GHz), and tau(f)=-50.2 ppm/degrees C. These results demonstrate that MgZrNb2O8 could be a promising candidate material for the application of highly selective microwave ceramic resonators and filters. (C) 2013 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机构:Tianjin University,School of Electrical and Information Engineering & Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education
Mi Xiao
Jie Lou
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机构:Tianjin University,School of Electrical and Information Engineering & Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education
Jie Lou
Yanshuang Wei
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机构:Tianjin University,School of Electrical and Information Engineering & Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education
Yanshuang Wei
Hongrui Sun
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机构:Tianjin University,School of Electrical and Information Engineering & Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education
Hongrui Sun
Lei Li
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机构:Tianjin University,School of Electrical and Information Engineering & Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education
Lei Li
Ping Zhang
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机构:Tianjin University,School of Electrical and Information Engineering & Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education
Ping Zhang
Journal of Materials Science: Materials in Electronics,
2018,
29
: 985
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992