Abstract
Low-dielectric-constant microwave dielectric ceramics can reduce signal transmission delays at high frequencies. LiAlO2 ceramics are attractive for high-frequency applications due to their low permittivity and loss, but the practical use is limited by their high sintering temperature and large temperature coefficient. In this study, Li-Mg-Zn-B-Si (G6) glass and BaCu(B2O5) (BCB) were selected as additives to reduce the sintering temperature of LiAlO2 ceramics. Excellent microwave dielectric properties were achieved at 950 ℃ by adding 3 wt%G6 and 2 wt%BCB. Additionally, temperature-stable LiAlO2-Ba3V2O8 composite ceramics were designed and investigated for their phase composition and dielectric properties. The results indicate that with 3 wt%G6 and 2 wt%BCB, the 0.7LiAlO2-0.3Ba3V2O8 composite ceramics exhibited excellent microwave dielectric properties at 950 ℃ for 4 h: εr ∼ 10.49, Q×f ∼ 22,000 GHz (@ f = 9.9 GHz), and a near-zero temperature coefficient (TCF) ∼ + 5.7 ppm/℃. This work presents a practical method for modifying LiAlO2 ceramics for low-permittivity microwave applications.
| Original language | English |
|---|---|
| Article number | 118611 |
| Journal | Journal of the European Ceramic Society |
| Volume | 46 |
| Issue number | 16 |
| DOIs | |
| State | Published - Dec 2026 |
| Externally published | Yes |
Keywords
- BaVO
- LiAlO
- Low-temperature co-fired ceramics technology
- Microwave dielectric ceramics
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