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Relaxor Behaviour and Soft Mode in 0.85Ag^sub 0.9^Li^sub 0.1^NbO^sub 3^ - 0.15Bi^sub 0.5^K^sub 0.5^TiO^sub 3^ Ceramics
New leadless ferroelectric relaxor ... ceramics have been obtained. The ceramics exhibits a smeared frequency-dependent maximum of permittivity, which follows the Fogel-Vulcher law with the freezing temperature T... = 250 K. The Last mode in 0.85...-0.15... ceramics is the ferroelectric soft mode in...
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Published in: | Ferroelectrics 2011-05, Vol.416 (1), p.72 |
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container_title | Ferroelectrics |
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creator | Pozingis, J Banys, J MaCutkevic, J Adomavicius, R Krotkus, A Lupascu, D C |
description | New leadless ferroelectric relaxor ... ceramics have been obtained. The ceramics exhibits a smeared frequency-dependent maximum of permittivity, which follows the Fogel-Vulcher law with the freezing temperature T... = 250 K. The Last mode in 0.85...-0.15... ceramics is the ferroelectric soft mode inside polar nanoregions, with the critical temperature T... = 437 K. (ProQuest: ... denotes formulae/symbols omitted.) |
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The ceramics exhibits a smeared frequency-dependent maximum of permittivity, which follows the Fogel-Vulcher law with the freezing temperature T... = 250 K. The Last mode in 0.85...-0.15... ceramics is the ferroelectric soft mode inside polar nanoregions, with the critical temperature T... = 437 K. 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The ceramics exhibits a smeared frequency-dependent maximum of permittivity, which follows the Fogel-Vulcher law with the freezing temperature T... = 250 K. The Last mode in 0.85...-0.15... ceramics is the ferroelectric soft mode inside polar nanoregions, with the critical temperature T... = 437 K. (ProQuest: ... denotes formulae/symbols omitted.)</abstract><cop>Philadelphia</cop><pub>Taylor & Francis Ltd</pub></addata></record> |
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subjects | Ceramics Ferroelectrics Freezing Temperature |
title | Relaxor Behaviour and Soft Mode in 0.85Ag^sub 0.9^Li^sub 0.1^NbO^sub 3^ - 0.15Bi^sub 0.5^K^sub 0.5^TiO^sub 3^ Ceramics |
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