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Temperature Stable Cold Sintered (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 Microwave Dielectric Composites

机译:温度稳定的冷烧结(Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7微波电介质复合材料

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摘要

Dense (Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7 (100−x) wt.% (Bi0.95Li0.05)(V0.9Mo0.1)O4 (BLVMO)-x wt.% Na2Mo2O7 (NMO) composite ceramics were successfully fabricated through cold sintering at 150 °C under at 200 MPa for 30 min. X-ray diffraction, back-scattered scanning electron microscopy, and Raman spectroscopy not only corroborated the coexistence of BLVMO and NMO phases in all samples, but also the absence of parasitic phases and interdiffusion. With increasing NMO concentration, the relative pemittivity (εr) and the Temperature Coefficient of resonant Frequency (TCF) decreased, whereas the Microwave Quality Factor (Qf) increased. Near-zero TCF was measured for BLVMO-20wt.%NMO composites which exhibited εr ~ 40 and Qf ~ 4000 GHz. Finally, a dielectric Graded Radial INdex (GRIN) lens was simulated using the range of εr in the BLVMO-NMO system, which predicted a 70% aperture efficiency at 26 GHz, ideal for 5G applications.
机译:致密(Bi0.95Li0.05)(V0.9Mo0.1)O4-Na2Mo2O7(100-x)wt。%(Bi0.95Li0.05)(V0.9Mo0.1)O4(BLVMO)-x wt。%Na2Mo2O7 (NMO)复合陶瓷是通过在150℃,200 MPa下进行30分钟的冷烧结而成功制成的。 X射线衍射,背散射扫描电子显微镜和拉曼光谱不仅证实了所有样品中BLVMO和NMO相的共存,而且还证实了没有寄生相和互扩散。随着NMO浓度的增加,相对介电常数(ε r )和谐振频率温度系数(TCF)减小,而微波品质因数(Qf)增大。对BLVMO-20wt。%NMO复合材料的ε r 〜40和Qf〜4000 GHz测得的TCF接近零。最后,在BLVMO-NMO系统中使用ε 的范围模拟了介电渐变径向索引(GRIN)透镜,该透镜预测26 GHz时的孔径效率为70%,非常适合5G应用。

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