Microwave Dielectric Properties of Ti-Substituted Bi2(Zn2/3Nb4/3)O7Pyrochlores at Cryogenic Temperatures

Author:

Sudheendran Kooriyattil,Raju Kanakkappillavila Chinnayya James,Jacob Mohan Vadakkedam

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

Reference23 articles.

1. 1 S. Kim , J. Yim , and B. Kim , “A New Planar-Type Dielectric Resonator Using LTCC Technology for mm-Wave Band Applications,” Microwave Opt Technol. Lett., 44 [6] 533-6 (2005).

2. 2 J. K. Plourde and C. L. Ren , “Application of Dielectric Resonators in Microwave Components,” IEEE Trans. Microwave Theory Tech., 29 [8] 754-70 (1981).

3. 3 J. H. Choi , J. H. Kim , B. T. Lee , Y. M. Kim , and J. H. Moon , “Microwave Dielectric Properties of Ba-Nd-Ti-O System Doped with Metal Oxides,” Mater. Lett., 44, 29-34 (2000).

4. 4 M. C. Wu , S. Kamba , V. Bovtun , and W. F. Su , “Comparison of Microwave Dielectric Behavior Between Bi1.5Zn0.92Nb1.5O6.92 and Bi1.5ZnNb1.5O7,” J. Eur. Ceram. Soc., 26, 1889-93 (2006).

5. 5 H. C. Ling , M. F. Yan , and W. W. Rhodes , “High Dielectric Constant and Small Temperature Coefficient Bismuth-Based Dielectric Compositions,” J. Mater. Res., 5 [8] 1752-62 (1990).

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