Effect of V2O5 Doping on the Sintering and Dielectric Properties of M-Phase Li1+x-yNb1-x-3yTix+4yO3 Ceramics
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چکیده
The effect of the addition of V2O5 on the structure, sintering and dielectric properties of M-phase (Li1+xyNb1-x-3yTix+4y)O3 ceramics has been investigated. Homogeneous substitution of V5+ for Nb5+ was obtained in LiNb0.6(1-x) V0.6xTi0.5O3 for x ≤ 0.02. The addition of V2O5 led to a large reduction in the sintering temperature and samples with x = 0.02 could be fully densified at 900oC. The substitution of vanadia had a relatively minor adverse effect on the microwave dielectric properties of the M-phase system and the x = 0.02 ceramics had εr = 66, Q x f = 3800 at 5.6 GHz, and τf = 11 ppm/oC. Preliminary investigations suggest that silver metallization does not diffuse into the V2O5-doped M-phase ceramics at 900oC, making these materials potential candidates for low-temperature cofired ceramic (LTCC) applications. Comments Copyright The American Ceramic Society. Reprinted from Journal of the American Ceramic Society, Volume 87, Issue 6, June 2004, pages 1047-1052. This journal article is available at ScholarlyCommons: http://repository.upenn.edu/mse_papers/42 Effect of V2O5 Doping on the Sintering and Dielectric Properties of M-Phase Li1 x yNb1 x 3yTix 4yO3 Ceramics Albina Y. Borisevich* and Peter K. Davies** Department of Materials Science and Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6272 The effect of the addition of V2O5 on the structure, sintering and dielectric properties of M-phase (Li1 x yNb1 x 3yTix 4y)O3 ceramics has been investigated. Homogeneous substitution of V for Nb was obtained in LiNb0.6(1 x)V0.6xTi0.5O3 for x < 0.02. The addition of V2O5 led to a large reduction in the sintering temperature and samples with x 0.02 could be fully densified at 900°C. The substitution of vanadia had a relatively minor adverse effect on the microwave dielectric properties of the M-phase system and the x 0.02 ceramics had r 66, Q f 3800 at 5.6 GHz, and f 11 ppm/°C. Preliminary investigations suggest that silver metallization does not diffuse into the V2O5-doped M-phase ceramics at 900°C, making these materials potential candidates for low-temperature cofired ceramic (LTCC) applications.
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تاریخ انتشار 2016