Phase formation, crystal structure and dielectric properties of NaCa4V5O17 ceramics fabricated via a solid state reaction route at relatively low temperatures (780-860 °C) were investigated. NaCa4V5O17 crystallizes in a triclinic structure. Dielectric properties were measured based on the Hakki-Coleman post resonator method at microwave frequency. Specially, a specimen sintered at 840 °C demonstrated balanced dielectric properties with a permittivity εr = 9.72, a quality factor Q×f = 51,000 GHz, and a temperature coefficient of resonance frequency τf = -84 ppm/°C. NaCa4V5O17 ceramics showed excellent chemical compatibility with Ag metal electrodes. Besides, the thermal stability of resonance frequency was effectively adjusted through format...
Abstract A cubic rock salt structured ceramic, Li₇Ti₃O₉F, was fabricated via the conventional solid-...
Ceramics with low dielectric constant are widely used in high frequency substrates. The low temperat...
In this work, the (1-x)CaWO4-xNa2WO4 (x = 0.1, 0.2, denoted as 0.9CW-0.1NW and 0.8CW-0.2NW, respecti...
Phase formation, crystal structure and dielectric properties of NaCa4V5O17 ceramics fabricated via a...
Ca5A4TiO17 (A = Nb, Ta) dielectric ceramics were prepared by the conventional solid-state ceramic r...
Microwave ceramic dielectric materials Ca5Nb2TiO12 and Ca5Ta2TiO12 have been prepared by a conventio...
A Li4WO5 ceramic with rock salt structure was prepared by the solid-state reaction method and its mi...
ABSTRACT: A new ultralow dielectric loss cofired CaMg- GeO4 dielectric material with olivine struct...
A low temperature fired Na2CaV4O12 ceramic was synthesized via a solid-state reaction route at a tem...
The rapid development and substantial growth of the microwave (MW) telecommunication industry has bo...
High-speed signal propagation systems require dielectric ceramics with low relative permittivity (εr...
In this study, Ca4−xLa2+xTi5−xBxO17 (B = Al, Ga; x = 0, 1) ceramics were processed via a mixed oxide...
The feasibility of novel LiCo1-xAxVO4 (A = Mg, Zn; x = 0–0.09) microwave dielectrics for ULTCC (ultr...
At extremely low temperatures, Ag2CaV4O12 was easily synthesized using the traditional solid-state a...
Abstract A new ultralow dielectric loss cofired CaMgGeO₄ dielectric material with olivine structure...
Abstract A cubic rock salt structured ceramic, Li₇Ti₃O₉F, was fabricated via the conventional solid-...
Ceramics with low dielectric constant are widely used in high frequency substrates. The low temperat...
In this work, the (1-x)CaWO4-xNa2WO4 (x = 0.1, 0.2, denoted as 0.9CW-0.1NW and 0.8CW-0.2NW, respecti...
Phase formation, crystal structure and dielectric properties of NaCa4V5O17 ceramics fabricated via a...
Ca5A4TiO17 (A = Nb, Ta) dielectric ceramics were prepared by the conventional solid-state ceramic r...
Microwave ceramic dielectric materials Ca5Nb2TiO12 and Ca5Ta2TiO12 have been prepared by a conventio...
A Li4WO5 ceramic with rock salt structure was prepared by the solid-state reaction method and its mi...
ABSTRACT: A new ultralow dielectric loss cofired CaMg- GeO4 dielectric material with olivine struct...
A low temperature fired Na2CaV4O12 ceramic was synthesized via a solid-state reaction route at a tem...
The rapid development and substantial growth of the microwave (MW) telecommunication industry has bo...
High-speed signal propagation systems require dielectric ceramics with low relative permittivity (εr...
In this study, Ca4−xLa2+xTi5−xBxO17 (B = Al, Ga; x = 0, 1) ceramics were processed via a mixed oxide...
The feasibility of novel LiCo1-xAxVO4 (A = Mg, Zn; x = 0–0.09) microwave dielectrics for ULTCC (ultr...
At extremely low temperatures, Ag2CaV4O12 was easily synthesized using the traditional solid-state a...
Abstract A new ultralow dielectric loss cofired CaMgGeO₄ dielectric material with olivine structure...
Abstract A cubic rock salt structured ceramic, Li₇Ti₃O₉F, was fabricated via the conventional solid-...
Ceramics with low dielectric constant are widely used in high frequency substrates. The low temperat...
In this work, the (1-x)CaWO4-xNa2WO4 (x = 0.1, 0.2, denoted as 0.9CW-0.1NW and 0.8CW-0.2NW, respecti...