Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics
碩士 === 國立臺南大學 === 材料科學系碩士班 === 96 === This research is composed of two parts. First, the ceramics of Ag1-xLixNbO3(ALN) solid solution were sintered for Li concentration range 0≦x≦0.1. We investigate the phase transition behavior and dielectric properties of Li-doped with different concentration by u...
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ndltd-TW-096NTNT51590232015-11-23T04:03:31Z http://ndltd.ncl.edu.tw/handle/91614634994613976429 Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics 鈮酸銀摻雜鋰與鉍陶瓷之相變研究 Ming-chou Tsai 蔡銘洲 碩士 國立臺南大學 材料科學系碩士班 96 This research is composed of two parts. First, the ceramics of Ag1-xLixNbO3(ALN) solid solution were sintered for Li concentration range 0≦x≦0.1. We investigate the phase transition behavior and dielectric properties of Li-doped with different concentration by using XRD、SEM、DSC、dielectric constant and Raman scattering. As a result, with increasing lithium contents, the phase transition of M1-M2 was shifted to lower temperature while the phase transition of M3-O1 was shifted to higher temperature. The orthorhombic symmetry was changed to tetragonal symmetry when x is greater than 0.05. The maximum value of the dielectric constant at x=0.05 was 400, and the dielectric loss value was controlled below 5%. Second, the ceramics of Ag1-yBiy/3NbO3 solid solution were sintered for Bi concentration range 0≦y≦0.15. Using the same analytic instruments, we investigate the phase transition behavior and dielectric properties of Bi-doping with different concentration. Room and high temperature phase transition were shifted to lower temperature by Bi-doping. Phase transition points were shifted to become fast and the phase structure was changed toward tetragonal symmetry after y>0.15. In addition, the value of dielectric loss was controlled below 0.2% from 250K to 450K. Yung-Der Juang 莊陽德 2008 學位論文 ; thesis 87 zh-TW |
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碩士 === 國立臺南大學 === 材料科學系碩士班 === 96 === This research is composed of two parts. First, the ceramics of Ag1-xLixNbO3(ALN) solid solution were sintered for Li concentration range 0≦x≦0.1. We investigate the phase transition behavior and dielectric properties of Li-doped with different concentration by using XRD、SEM、DSC、dielectric constant and Raman scattering. As a result, with increasing lithium contents, the phase transition of M1-M2 was shifted to lower temperature while the phase transition of M3-O1 was shifted to higher temperature. The orthorhombic symmetry was changed to tetragonal symmetry when x is greater than 0.05. The maximum value of the dielectric constant at x=0.05 was 400, and the dielectric loss value was controlled below 5%. Second, the ceramics of Ag1-yBiy/3NbO3 solid solution were sintered for Bi concentration range 0≦y≦0.15. Using the same analytic instruments, we investigate the phase transition behavior and dielectric properties of Bi-doping with different concentration. Room and high temperature phase transition were shifted to lower temperature by Bi-doping. Phase transition points were shifted to become fast and the phase structure was changed toward tetragonal symmetry after y>0.15. In addition, the value of dielectric loss was controlled below 0.2% from 250K to 450K.
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Yung-Der Juang |
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Yung-Der Juang Ming-chou Tsai 蔡銘洲 |
author |
Ming-chou Tsai 蔡銘洲 |
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Ming-chou Tsai 蔡銘洲 Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics |
author_sort |
Ming-chou Tsai |
title |
Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics |
title_short |
Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics |
title_full |
Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics |
title_fullStr |
Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics |
title_full_unstemmed |
Phase transition of the Li-doped and Bi-doped Silver Niobate Ceramics |
title_sort |
phase transition of the li-doped and bi-doped silver niobate ceramics |
publishDate |
2008 |
url |
http://ndltd.ncl.edu.tw/handle/91614634994613976429 |
work_keys_str_mv |
AT mingchoutsai phasetransitionofthelidopedandbidopedsilverniobateceramics AT càimíngzhōu phasetransitionofthelidopedandbidopedsilverniobateceramics AT mingchoutsai nǐsuānyíncànzálǐyǔbìtáocízhīxiāngbiànyánjiū AT càimíngzhōu nǐsuānyíncànzálǐyǔbìtáocízhīxiāngbiànyánjiū |
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