Microwave dielectric materials are used more and more widely in resonators, filters, integrated passive modules, etc., for the emerging wireless communications applications. The low sintering temperature together with excellent and tunable microwave dielectric properties of the M-phase Li-Nb-Ti-O ceramics stimulated much interest in searching new microwave materials in the Li2O-Nb2O5-TiO2 ternary system. In the past decade, a series of Li-Nb-Ti-O based microwave dielectric ceramics and low temperature co-fired ceramics have been developed. The present paper summarized the comprehensive work on the microstructure, microwave dielectric properties, and low temperature sintering of the Li-Nb-Ti-O ceramics. We expect to provide broad-spectrum in...
The structure and dielectric properties of the so-called M-phase solid solutions in the Li2O-Nb2O5-T...
Ca5A4TiO17 (A = Nb, Ta) dielectric ceramics were prepared by the conventional solid-state ceramic r...
The densification behavior, structural and microstructural evolution and microwave dielectric proper...
AbstractMicrowave dielectric materials are used more and more widely in resonators, filters, integra...
The dissertation describes the preparation, structure (studied by X-ray diffraction and TEM), and di...
In this work, (1-x)Li2TiO3-xLi4NbO4F ceramics were prepared by the conventional solid-state ceramic ...
Herein, the sintering behavior and dielectric properties of Ta5+-doped Li3Mg4NbO8 ceramics were inve...
High-speed signal propagation systems require dielectric ceramics with low relative permittivity (εr...
Giant dielectric (GD) oxides exhibiting extremely large dielectric permittivities (ε’ > 104) have be...
Abstract A low‐permittivity dielectric ceramic Li₂GeO₃ was prepared by the solid‐state reaction rou...
In addition to the constant demand of low-loss dielectric materials for wireless telecommunication, ...
Abstract A cubic rock salt structured ceramic, Li₇Ti₃O₉F, was fabricated via the conventional solid-...
Mg2SiO4 holds promise for its application in the microwave communication field due to its low dielec...
Abstract Rapid developments of microwave dielectric materials have emerged in recent years due to t...
Microwave ceramic dielectric materials Ca5Nb2TiO12 and Ca5Ta2TiO12 have been prepared by a conventio...
The structure and dielectric properties of the so-called M-phase solid solutions in the Li2O-Nb2O5-T...
Ca5A4TiO17 (A = Nb, Ta) dielectric ceramics were prepared by the conventional solid-state ceramic r...
The densification behavior, structural and microstructural evolution and microwave dielectric proper...
AbstractMicrowave dielectric materials are used more and more widely in resonators, filters, integra...
The dissertation describes the preparation, structure (studied by X-ray diffraction and TEM), and di...
In this work, (1-x)Li2TiO3-xLi4NbO4F ceramics were prepared by the conventional solid-state ceramic ...
Herein, the sintering behavior and dielectric properties of Ta5+-doped Li3Mg4NbO8 ceramics were inve...
High-speed signal propagation systems require dielectric ceramics with low relative permittivity (εr...
Giant dielectric (GD) oxides exhibiting extremely large dielectric permittivities (ε’ > 104) have be...
Abstract A low‐permittivity dielectric ceramic Li₂GeO₃ was prepared by the solid‐state reaction rou...
In addition to the constant demand of low-loss dielectric materials for wireless telecommunication, ...
Abstract A cubic rock salt structured ceramic, Li₇Ti₃O₉F, was fabricated via the conventional solid-...
Mg2SiO4 holds promise for its application in the microwave communication field due to its low dielec...
Abstract Rapid developments of microwave dielectric materials have emerged in recent years due to t...
Microwave ceramic dielectric materials Ca5Nb2TiO12 and Ca5Ta2TiO12 have been prepared by a conventio...
The structure and dielectric properties of the so-called M-phase solid solutions in the Li2O-Nb2O5-T...
Ca5A4TiO17 (A = Nb, Ta) dielectric ceramics were prepared by the conventional solid-state ceramic r...
The densification behavior, structural and microstructural evolution and microwave dielectric proper...