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Cation distributions and microwave dielectric properties of Cu-substituted ZnGa2O4 spinel ceramics

机译:Cu-取代的Znga2O4尖晶石陶瓷的阳离子分布和微波介电性能

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摘要

Spinel Zn1-xCuxGa2O4 (x = 0-0.05) ceramics were prepared by the conventional solid-state method. Only a single phase was indexed in all samples. The relative density increased with Cu-substitution. Refined crystal structure parameters suggested that Cu2+ preferentially occupies the octahedron site and formed inverse spinel structure. The relative intensity of A(1g)* mode in Raman spectra confirmed that the inversion degree climbed with the growing content of Cu. The differences of ion dielectric polarizability resulted in the shift of absorption bands in Fourier transform infrared (FT-IR) spectroscopy. Ion dielectric polarizability and cell volumes differences affected permittivity (epsilon(r)) and increased epsilon(r) slightly during Cu-substitution. The temperature coefficient of resonant frequency (tau(f)) kept steady, however, the quality factor (Q x f) value of Zn1-xCuxGa2O4 ceramics increased by 50% due to the Cu-substitution (from 85,824 GHz to 131,445 GHz). Zn0.99Cu0.01Ga2O4 ceramic s sintered at 1400 degrees C for 2 h exhibited good microwave dielectric properties, with epsilon(r) = 9.88, Q x f = 131,445 GHz, tan delta = 6.85 x 10(-5),and tau(f) = -60 ppm/degrees C.
机译:通过常规固态方法制备尖晶石Zn1-Xcuxga2O4(X = 0-0.05)陶瓷。在所有样品中只均编程单个阶段。用Cu - 取代来增加相对密度。精致的晶体结构参数表明CU2 +优先占据八面体座位并形成逆尖晶石结构。拉曼光谱中的(1G)*模式的相对强度证实了随着Cu的不断增长的含量攀升的反演程度。离子介质极化性的差异导致傅里叶变换红外(FT-IR)光谱中的吸收带的偏移。离子介电极化性和细胞体积差异影响介电常数(ε(R))和在Cu - 取代期间略微增加ε(R)。谐振频率的温度系数(TAU(F))保持稳定,然而,由于Cu - 取代,Zn1-Xcuxga2O4陶瓷的质量因数(Q×F)值增加了50%(从85,824GHz到131,445GHz)。 Zn0.99cu0.01ga2O4陶瓷S在1400℃下烧结2小时,表现出良好的微波介电性能,epsilon(r)= 9.88,q xf = 131,445ghz,tan delta = 6.85 x 10(-5)和tau(f )= -60 ppm /℃。

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