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Regulation of the temperature stability in ordered olivine microwave dielectric ceramics with low loss for dielectric resonant antenna

作者:Huaicheng Xiang, Yang Zhou, Junqi Chen, Ning Zhang, Wu Xiaoyu, Ying Tang, Liang Fang · 发表于:Journal of Advanced Ceramics · 年份:2025 · DOI:10.26599/jac.2025.9221149 · 被引用次数:14 · 研究领域:Microwave Dielectric Ceramics Synthesis、Ferroelectric and Piezoelectric Materials、Multiferroics and related materials

Olivine-type A 2 BO 4 ceramics possess a low permittivity ( ε r ) and low dielectric loss, contributing to a high quality factor ( Q×f ). However, the large negative temperature coefficient of resonant frequency ( τ f ) restricts their practical applications. In this work, we prepared a series of CaYGa 1- x Al x O 4 ( x = 0–1) ceramics with low ε r using the solid-state sintering method. By controlling the evolution of the orthorhombic olivine to the tetragonal perovskite-like structure (K 2 NiF 4 ) and the ordered regulation of the A-site, an ultra-low loss (tan δ = 1.38 × 10 -4 , Q×f = 125,530 GHz, and f = 17.3 GHz for x = 0) and a nearly zero temperature coefficient ( τ f = -0.5 ppm/°C for x = 0.9) were achieved. The significant changes in the dielectric properties ( ε r = 8.3–16.2, Q×f = 125,530–50,660 GHz, and τ f = -50.9– +2.9 ppm/°C) of these ceramics are primarily influenced by the characteristics of the second phase, ion polarization, ion order and disorder, and the chemical bonds resulting from structural evolution. Furthermore, a cylindrical dielectric resonator antenna (CDRA) was designed using ultra-low-loss CaYGaO 4 ceramic, achieving a high gain (5.36–6.15 dBi) and efficiency (> 90%) in the bandwidth region (5.065–5.747 GHz), thereby enhancing the efficiency and quality of 5G communications. This work advances the development of control strategies for high-performance dielectric ceramics and dielectric resonator antennas in high...