首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electrical properties and microwave dielectric behavior of holmium substituted barium zirconium titanate ceramics
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Electrical properties and microwave dielectric behavior of holmium substituted barium zirconium titanate ceramics

机译:取代钛酸锆锆钡陶瓷的电性能和微波介电性能

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Structural, microwave dielectric and electrical properties of (Ba_(1-x)Ho_x)(Zr_(0.52)Ti_(0.48))O_3 with the mole fraction of x = 0.1 and 0.2 have been investigated. The results obtained from these studies indicate the substitution of Ho-ions within the barium zirconium titanate. The microwave dielectric parameters were measured using the time domain reflectometry (TDR) method in the frequency range 10 MHz to 30 GHz. The dielectric constant as a function of temperature exhibited diffuse phase transition behavior for x = 0.1 Ho-substituted ceramics accompanied with lower value of dielectric constant. Complex impedance (Z~+) planes show frequency dependent behavior as the response for the grain resistance mechanisms. This mechanism has been represented by an RC equivalent circuit. Our results aiong with the observation of negative temperature coefficient of resistance (NTCR) upon Ho~(3+) ions substitution clearly suggest the design and development of novel microwave dielectric resonators based on barium zirconium titanate materials substituted with rare earth ions.
机译:研究了摩尔分数为x = 0.1和0.2的(Ba_(1-x)Ho_x)(Zr_(0.52)Ti_(0.48))O_3的结构,微波介电性能和电性能。从这些研究中获得的结果表明钛酸钡锆中的Ho离子被取代。使用时域反射仪(TDR)方法在10 MHz至30 GHz的频率范围内测量微波介电参数。介电常数随温度的变化表现出x = 0.1 Ho-取代陶瓷的扩散相变行为,同时介电常数较低。复阻抗(Z〜+)平面显示出随频率变化的行为,作为对晶粒电阻机制的响应。这种机制已由RC等效电路表示。我们的结果与观察到Ho〜(3+)离子取代时的负电阻温度系数(NTCR)密切相关,这清楚地表明了基于钛酸钡锆钛酸盐材料替代稀土离子的新型微波介电共振器的设计和开发。

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