Dielectric properties and applications of low loss (1−x)(Mg0.95Co0.05)TiO3–xCa0.8Sm0.4/3TiO3 ceramic system at microwave frequency
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference19 articles.
1. Influence of microstructure on microwave dielectric properties of ZnTa2O6 ceramics with low dielectric loss
2. Phases, microstructure and microwave dielectric properties of hexagonal perovskite Ca(La1−xNdx)4Ti4O15 ceramics
3. New dielectric material system of (Mg0.95Zn0.05)TiO3–Ca0.61Nd0.26TiO3 at microwave frequency
4. Low-Dielectric Loss Characteristics of Nd(Co1/2Ti1/2)O3Ceramics at Microwave Frequencies
5. High-Q Microwave Dielectric Materials Based on the Spinel Mg2TiO4
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1. Characterization and Dielectric Behavior of Varied Sintering-Accelerator-Doped Magnesium Titanates at Microwave Frequency;J CERAM SCI TECHNOL;2024
2. The Enhanced Phase-Forming Capacity of (1–x)Mg0.95Co0.05TiO3-xCa0.6La0.8/3TiO3 Dielectric Ceramics Modified Using Multiple Sintering Aids;Crystals;2023-06-09
3. Phase composition, microstructure and dielectric properties of middle-fired LiF-doped MgTi(1−x)ZrxO3 ceramics;Ferroelectrics;2022-03-12
4. Microwave Performance, Microstructure, and Crystallization of (Mg0.6Zn0.4)1−yNiyTiO3 Ilmenite Ceramics;Applied Sciences;2021-03-25
5. Phase composition and particle size distribution in Mg(Ti1-x Sn x )O3 powders;Journal of Physics: Conference Series;2019-02
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