Zirconium tin titanate (ZST) is often used as a dielectric resonator for the fabrication of microwave devices. Pure compositions do not sinter easily by solid state sintering; therefore, sintering ZST requires sintering aids capable of creating defects that could improve diffusion processes and/or promote liquid phase sintering. The mechanisms by which the additives influence the microstructure and, consequently, the ZSTs dielectric properties are not very clear. The effects of ZnO, Bi2O3, and La2O3, on the stoichiometry and dielectric properties of ZST sintered at different temperatures were investigated in this study.Coordination for Improvement of PostGraduationCAPESCoordination for Improvement of Post-Graduation-CAPESSao Paulo Research ...
Microwave dielectric properties of the Ba-2,Ti9O20-based ceramics with ZnBO addition up to 3 wt.% an...
In this study, the effect of B2O3 addition on the sintering behavior of 0-5-10% ZrO2 doped barium ti...
The effects of B2O3 on the sinterability and microwave dielectric properties of Ca[(Li1/3Nb2/3)0.92Z...
Zirconium tin titanate (ZST) is often used as a dielectric resonator for the fabrication of microwav...
Low dielectric loss Zn0.7Mg0.3TiO3 and MgTiO3 microwave dielectric resonators were prepared by the c...
The effect of CuO on the sintering temperature, microstructure and microwave dielectric properties o...
The effect of CuO on the sintering temperature, microstructure, and the microwave dielectric propert...
Dielectric ceramics have been widely investigated and used for microwave applications such as resona...
For microwave applications, including mobile and satellite communications, ceramic resonators should...
Zr0.8Sn0.2TiO3 (ZST) powders synthesized by solid-state reaction were subject to processing by spark...
Conventional solid state reaction method is a common and effective way to fabricate modern ceramics....
The densification behavior, structural and microstructural evolution and microwave dielectric proper...
[[abstract]]Effects of a liquid-phase-sintering aid, BaCuO2 + CuO (BCC), on densification and microw...
Wireless communication systems utilize microwave dielectrics for coupling, selecting and filtering m...
[[abstract]]This work investigated the effects of MgO and ZnO additives on the microwave properties ...
Microwave dielectric properties of the Ba-2,Ti9O20-based ceramics with ZnBO addition up to 3 wt.% an...
In this study, the effect of B2O3 addition on the sintering behavior of 0-5-10% ZrO2 doped barium ti...
The effects of B2O3 on the sinterability and microwave dielectric properties of Ca[(Li1/3Nb2/3)0.92Z...
Zirconium tin titanate (ZST) is often used as a dielectric resonator for the fabrication of microwav...
Low dielectric loss Zn0.7Mg0.3TiO3 and MgTiO3 microwave dielectric resonators were prepared by the c...
The effect of CuO on the sintering temperature, microstructure and microwave dielectric properties o...
The effect of CuO on the sintering temperature, microstructure, and the microwave dielectric propert...
Dielectric ceramics have been widely investigated and used for microwave applications such as resona...
For microwave applications, including mobile and satellite communications, ceramic resonators should...
Zr0.8Sn0.2TiO3 (ZST) powders synthesized by solid-state reaction were subject to processing by spark...
Conventional solid state reaction method is a common and effective way to fabricate modern ceramics....
The densification behavior, structural and microstructural evolution and microwave dielectric proper...
[[abstract]]Effects of a liquid-phase-sintering aid, BaCuO2 + CuO (BCC), on densification and microw...
Wireless communication systems utilize microwave dielectrics for coupling, selecting and filtering m...
[[abstract]]This work investigated the effects of MgO and ZnO additives on the microwave properties ...
Microwave dielectric properties of the Ba-2,Ti9O20-based ceramics with ZnBO addition up to 3 wt.% an...
In this study, the effect of B2O3 addition on the sintering behavior of 0-5-10% ZrO2 doped barium ti...
The effects of B2O3 on the sinterability and microwave dielectric properties of Ca[(Li1/3Nb2/3)0.92Z...