Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7990227 | Journal of Alloys and Compounds | 2018 | 24 Pages |
Abstract
As an admirable candidate of thermostable LTCC materials, Bi2(Zn1-xNix)2/3Nb4/3O7 (0.0â¯â¤â¯xâ¯â¤â¯0.5) ceramics with improved dielectric properties have been prepared via conventional mixed oxide route. Microstructure analysis manifests that the phase transition occurs from monoclinic zirconolite phase (β-BZN) to cubic phase (α-BZN) for Ni doped specimens. The crystal field theory supported the analysis of the initial phase transition processes. From the structure transformation and electrical properties test result, the Ni2+ substituted Zn2+ shows an effective method to restrain the grain growth and improve dielectric constant when sintered at 925â¯Â°C. The temperature coefficient of dielectric constant is controlled by phase composition and is found to be â6.4â¯ppm/°C at the two-phase coexistence region of the doping content xâ¯=â¯0.35. The dielectric properties of εâ¯=â¯101.2, tanδâ¯=â¯9.5â¯Ãâ¯10â4 are obtained in this component. The features of the Bi2(Zn1-xNix)2/3Nb4/3O7 ceramics make them promising for use in high-frequency applications.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Qianyu Guo, Lingxia Li, Shihui Yu, Zheng Sun, Haoran Zheng, Weijia Luo,