Structural and Microwave Dielectric Properties of the $Ba_5B_4O_{15}$ (B=Ta, Nb) Ceramics with Sintering Temperature

소결온도에 따른 $Ba_5B_4O_{15}$ (B=Ta, Nb)세라믹스의 구조 및 마이크로파 유전특성

  • Published : 2008.07.01

Abstract

In this study, both structural and microwave dielectric properties of the $Ba_5B_4O_{15}$ (B=Ta, Nb) cation-deficient perovskite ceramics with sintering temperature were investigated. All samples of the $Ba_5B_4O_{15}$ (B=Ta, Nb) ceramics were prepared by the conventional mixed oxide method and sintered at $1325^{\circ}C{\sim}1575^{\circ}C$. The bulk density and dielectric constant of the $Ba_5Ta_4O_{15}$ ceramics were increased continuously with increasing of sintering temperature. The quality factor of the $Ba_5Ta_4O_{15}$ ceramics was increased in as the sintering temperature increases from $1375^{\circ}C{\sim}1475^{\circ}C$ but decreased at the temperatures above $1475^{\circ}C$. And the bulk density, dielectric constant and quality factor of the $Ba_5Nb_4O_{15}$ ceramics were increased in as the sintering temperature increases from $1325^{\circ}CP{\sim}1400^{\circ}C$ but decreased at the temperatures above $1400^{\circ}C$. In the case of the $Ba_5Ta_4O_{15}$ sintered at $1475^{\circ}C$ and $Ba_5Nb_4O_{15}$ ceramics sintered at $1400^{\circ}C$, the dielectric constant, quality factor, and temperature coefficient of the resonant frequency (TCRF) were 25.15, 53,105 GHz, -3.06 $ppm/^{\circ}C$ and 39.55, 28,052 GHz, +5.7 ppm/$^{\circ}C$, respectively.

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References

  1. D. Kolar and D. Suvorov, 'High Permittivity Microwave Ceramics', Eur. J. Solid State Inorg. Chem., 32, pp.751-760, 1995
  2. K. Wakino, D. A. Sagala and H. Tamura, Proc. 6th Int. Meet. Ferroelectricity, Kobe, Jpn. J. Appl. Phys, 24, pp.1042, 1985 https://doi.org/10.7567/JJAPS.24S2.1042
  3. R. Ratheesh, H. Sreemoolanadhan, and M. T. Sebastian, 'Vibrational Analysis of $Ba_{5-x}Sr_xNb_4O_{15}$ Microwave Dielectric Ceramic Resonators', J. Solid State Chem., 131, Issue 1, pp.2-8, 1997 https://doi.org/10.1006/jssc.1996.7240
  4. B. W. Hakki et al., 'A Dielectric Resonator Method of Measuring Inductive Capacities in the Millimeter Range', IRE Trans. on Microwave Theory and Techniques, Vol.MTT-24, No.10, 1960
  5. J. Krupka, K. Derzakowsky, B. Riddle, and JB Jarvis, 'A Dielectric Resonator for Measurements of Complex Permittivity of Low Loss Dielectric Materials as Function of Temperature,' Meas. Sci. Technol., 9, pp.1751-1761, 1998 https://doi.org/10.1088/0957-0233/9/10/015
  6. L.M. Kouba, L. N. Lykova, M. V. Paromova, L. M. Lopato, and A. V. Shevchenko, Zh. Neorg. Khim., 'The BaO-$Ta_2O_5$ System', Russian J. Inorg. Chem., 22, pp.1544-1546, 1977
  7. T. A. Vanderah, T. R. Collins, W. Wong-Ng, I. Levin, R. S. Roth, and L. Farber, 'Phase Equilibria and Crystal Chemistry in the BaO-$Al_2O_3-Nb_2O_5$ and BaO-$Nb_2O_5$ Systems', J. Alloys Cmpds., 346, pp.116-128, 2002 https://doi.org/10.1016/S0925-8388(02)00520-0
  8. N. E. Massa, S. Pagola, R. E. Carbonio, J. A. Alonso, I. Rasines, G. Polla, G. Leyva, 'Raman Scattering and Far Infrared Reflectivity of $Ba_5Ta_4O_{15}$ and $Ba_5Nb_4O_{15-x}\;(0.0{\leq}x{\leq}0.56)$', SPIE International Symposium, pp.302-312, 1996
  9. W. D. Kingery, H. K. Bowen and D. R. Uhlmann, 'Introduction to Ceramics', John Wiely & Sons, Second edition, pp.937-945, 1976