首页|(162809)A novel low-loss (l-x)(Ca_(0.8)Sr_(0.2))TiO_3-xSmAlO_3 microwave dielectric ceramics with near-zero temperature coefficient
(162809)A novel low-loss (l-x)(Ca_(0.8)Sr_(0.2))TiO_3-xSmAlO_3 microwave dielectric ceramics with near-zero temperature coefficient
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NSTL
Elsevier
(l-x)Ca_(0.8)Sr_(0.2)TiO_3-xSmAlO_3 (abbreviated as (l-x)CST-xSA) perovskite ceramics were synthesized through the conventional solid-state reaction process. The effects of SmAlO_3 on the microstructure, low-frequency dielectric performances, and microwave dielectric properties for (l-x)CST-xSA ceramics were investigated systematically. All compositions exhibited an orthorhombic perovskite structure with dense surface morphology. With increasing the content of SmAlO_3) the order of B-site cation revealed a trend of increase first and then slowly decreased. The presence of oxygen vacancies in the (l-x)CST-xSA ceramics was detected by using x-ray photoelectron spectroscopy. Excellent temperature stability of dielectric permittivity and low dielectric loss (tan<5 lower than 0.005) were observed for (l-x)CST-xSA ceramics at low frequencies. For x = 0.35 composition, the temperature coefficient of the resonant frequency approached zero. In addition, the dielectric permittivity of 42.0, the quality factor of 39,120 GHz, and the temperature coefficient of resonant frequency of - 6.4 ppm/°C were obtained for 0.65CST-0.35SA ceramics. It is suggested that (l-x)CST-xSA ceramics can be used as a candidate material for various microwave communication components.
State Key Laboratory of Solidification Processing, School of Materials Science and Engineering, Northwestern Poly technical University, Xi'an 710072, China