材料科学
微观结构
陶瓷
电介质
四方晶系
结构精修
烧结
拉曼光谱
复合材料
矿物学
光电子学
分析化学(期刊)
晶体结构
结晶学
光学
物理
化学
色谱法
作者
Pengchao Shao,Xinyuan Lyu,Qihui Sun,Zhaoding Lang,Jia Wang,Ruihang Li,Le Xin,Xianfu Luo,Panpan Lyu,Luchao Ren,Mingwei Zhang
标识
DOI:10.1016/j.jeurceramsoc.2024.02.046
摘要
Novel dual-phase high-entropy (Ba0.2Sr0.2Ca0.2Na0.2Bi0.2)WO4 ceramics were designed to reduce the sintering temperature and optimize the frequencytemperature coefficients of scheelite-type AWO4 ceramics. XRD and Rietveld refinement analyses revealed that the ceramic contained dual phases of BaWO4 and Na0.5Bi0.5WO4. The phases had a tetragonal structure with the I41/a space group, as verified by TEM. With increasing sintering temperature, the ɛr exhibited a decreasing trend owing to the combined influence of ionic polarizability and density. In addition, the variation trend of the Q × f value was similar to that of the density, and its intrinsic influence was investigated by analyzing the FWHM of the Raman vibrational peak. The τf was well optimized and exhibited a variation trend similar to those of the lattice distortion and microstrain. Finally, the (Ba0.2Sr0.2Ca0.2Na0.2Bi0.2)WO4 sintered at 950 °C had the outstanding properties: ɛr of 13.8, Q×f of 33,110 GHz and τf of −34 ppm/°C at 9 GHz.
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