Study of BaO–Nd2O3–TiO2 ceramics doped with Li2O–ZnO–B2O3 glass for LTCC technology

It is necessary to use high-permittivity dielectric ceramics to realize various distributed microwave components in low-temperature co-fired ceramics (LTCC) structures. In this study, the Ba 3.75 Nd 6.5 Sm 3 Ti 17.5 (Cr 0.5 Nb 0.5 ) 0.5 O 54 (BNSTCN) ceramic was doped by Li 2 O–ZnO–B 2 O 3 (LZB) gla...

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Veröffentlicht in:Journal of materials science. Materials in electronics 2023-04, Vol.34 (10), p.921, Article 921
Hauptverfasser: Xiong, Zhe, Han, Yuxuan, He, Xinyu, Lei, Quanfan, Zhao, Rui, Huang, Weican, Zhang, Xing, Wu, Wenjuan, Li, Lezhong, Tang, Bin
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Sprache:eng
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Zusammenfassung:It is necessary to use high-permittivity dielectric ceramics to realize various distributed microwave components in low-temperature co-fired ceramics (LTCC) structures. In this study, the Ba 3.75 Nd 6.5 Sm 3 Ti 17.5 (Cr 0.5 Nb 0.5 ) 0.5 O 54 (BNSTCN) ceramic was doped by Li 2 O–ZnO–B 2 O 3 (LZB) glass to get the densification temperatures of lower than 960 °C . The effects of the LZB glass content on the wetting behavior, densification, and microwave properties were examined. The results showed that the BNSTCN + 4-wt% LZB sample sintered at 950 °C had outstanding microwave dielectric properties: dielectric constant ( ε r ) of 67.5, quality factor ( Q×f ) of 5,186 GHz, and temperature coefficient of resonance frequency ( τ f ) of − 0.6 ppm/°C. Besides, the BNSTCN + 5-wt% LZB sample sintered at 950 °C also presented good microwave dielectric properties: ɛ r = 67.9, Q × f  = 4,733 GHz, and τ f  = − 3.6 ppm/°C.
ISSN:0957-4522
1573-482X
DOI:10.1007/s10854-023-10267-3