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Structural characteristics and microwave dielectric properties of Zn1−xBixVxW1−xO4-based ceramics for LTCC applications.

Authors :
Zhang, Qin
Xu, Liangliang
Tang, Xiaoli
Zhang, Huaiwu
Zhou, Yingtang
Jing, Yulan
Li, Yuanxun
Liu, Yanan
Su, Hua
Source :
Journal of the European Ceramic Society. Oct2022, Vol. 42 Issue 13, p5691-5697. 7p.
Publication Year :
2022

Abstract

Herein, the improvement of the microwave dielectric properties and sintering characteristics of Zn 1−x Bi x V x W 1−x O 4 (x = 0–0.15)-based ceramics is reported. The results showed that an appropriate amount of doping could not only reduce the optimum sintering temperature from 1100° to 900°C, but also enhance the densification of the microstructures and increase the Q×f value from 5351 to 42525 GHz. Additionally, various structural parameters including the phase composition, crystal structure, vibrational and chemical bond characteristics that are correlated with the dielectric properties were systematically investigated. By considering the chemical bond characteristics, the first-principles calculations and the acquired Raman spectra, the interaction between W-O is stronger than Zn-O in the ZnWO 4 structure, while the interaction between V-O is stronger than Bi-O in BiVO 4. Interestingly, when the Zn 0.97 Bi 0.03 V 0.03 W 0.97 O 4 -based ceramics were sintered at 900 °C, improved microwave dielectric properties were acquired (ε r =18.32, Q×f =42525 GHz, τ f =−67.51 ppm/°C), which provides a promising candidate in low-temperature co-fired ceramics technology. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09552219
Volume :
42
Issue :
13
Database :
Academic Search Index
Journal :
Journal of the European Ceramic Society
Publication Type :
Academic Journal
Accession number :
158056873
Full Text :
https://doi.org/10.1016/j.jeurceramsoc.2022.06.033