Effects of surface microstructure on microwave dielectric properties of ZrO2-NiO added Ba(Zn1/3Ta2/3)O3 ceramics

Authors
Kang, S.W.Kim, T.H.Moon, J.Kim, S.Y.Park, J.Y.Choi, S.H.Kim, J.
Issue Date
2008-11
Citation
Journal of the Korean Ceramic Society, v.45, no.11, pp.701 - 706
Abstract
High frequency dielectric ceramics have potential for applications in mobile and satellite communications systems at frequencies higher than 10 GHz. The Ba(Zn1/3Ta2/3)O3 ceramics are known to have a high quality factor, a small temperature coefficient of the resonance frequency and a high dielectric constant. On the other hands, sintering at high temperature for extended time is required to obtain the ordered structure for high quality factor. In this study, the microwave dielectric properties of ZrO2 and NiO-added Ba(Zn1/3Ta2/3)O3 ceramics prepared by solid-state reaction have been investigated. Adding ZrO2 and NiO could effectively promote the densification even the case of decreasing the sintering time. At the surface of samples, secondary phase of Ba-Ta compounds was formed possibly due to the evaporation of ZnO, however, the interior of the samples remained as pure Ba(Zn1/3Ta 2/3)O3. The samples sintered at 1600°C for 2 h exhibited 1:2 ordering of Zn and Ta cations. Excellent microwave dielectric properties of Q·f(>96,000 GHz) and εr=30 has been obtained.
Keywords
Ba(Zn1/3Ta2/3)O3; Microwave dielectrics; Order-disorder; Second phase; ZrO2-NiO; Barium; Ceramic capacitors; Ceramic materials; Dielectric materials; Dielectric properties; Microwaves; Q factor measurement; Resonance; Satellite communication systems; Sintering; Tantalum; Zinc; Zinc oxide; Zirconium alloys; Barium compounds; Ba(Zn1/3Ta2/3)O3; Microwave dielectrics; Order-disorder; Second phase; ZrO2-NiO; Barium; Ceramic capacitors; Ceramic materials; Dielectric materials; Dielectric properties; Microwaves; Q factor measurement; Resonance; Satellite communication systems; Sintering; Tantalum; Zinc; Zinc oxide; Zirconium alloys; Barium compounds; Ba(Zn1/3Ta2/3)O3; Microwave dielectrics; Order-disorder; Second phase; ZrO2-NiO
ISSN
1229-7801
URI
https://pubs.kist.re.kr/handle/201004/133032
DOI
10.4191/KCERS.2008.45.1.701
Appears in Collections:
KIST Article > 2008
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