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Original Articles

Modified ferroelectric high density Strontium Barium Niobate ceramics for pyroelectric applications

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Pages 209-212 | Received 02 Mar 1988, Published online: 08 Feb 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

A. R. Kulkarni & P. K. Patro. (2010) Lead Free Strontium Barium Niobate Ferroelctric Ceramics—A Review on Synthesis, Microstructure and Dielectric Properties. Transactions of the Indian Ceramic Society 69:3, pages 135-146.
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M.R. Ranga Raju, R.N. P. Choudhary & H.R. Rukmini. (2005) Diffuse Phase Transition in Sr5RTi3Nb7O30 (R = La, Nd, Sm, Gd and Dy) Ferroelectric Ceramics. Ferroelectrics 325:1, pages 25-32.
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Articles from other publishers (16)

Jinglei Li, Yongping Pu, Zhuo Wang, Zijing Dong & Jie Dai. (2013) Microstructure and relaxor ferroelectric properties of Bi2O3-doped strontium barium niobate ceramics. Materials Science and Engineering: B 178:18, pages 1178-1185.
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Jinglei Li, Yongping Pu, Zhuo Wang & Jie Dai. (2013) A comparative study of Sr0.7Ba0.3Nb2O6 relaxor ferroelectric ceramics prepared by conventional and microwave sintering techniques. Ceramics International 39:5, pages 5069-5075.
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A. R. Kulkarni, P. K. Patro, S. M. Gupta & C. S. Harendranath. (2008) Electrical properties of ferroelectric Sr0.5Ba0.5Nb2O6 ceramic materials synthesized by different techniques. Electrical properties of ferroelectric Sr0.5Ba0.5Nb2O6 ceramic materials synthesized by different techniques.
P.K. Patro, A.R. Kulkarni, S.M. Gupta & C.S. Harendranath. (2007) Improved microstructure, dielectric and ferroelectric properties of microwave-sintered Sr0.5Ba0.5Nb2O6. Physica B: Condensed Matter 400:1-2, pages 237-242.
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Xian-Hao Wang, Hui Gu, Qing-Wei Huang & Miran Čeh. (2007) Cation occupancy at the A1/A2 sites in strontium barium niobate micro-crystals grown from molten NaCl and KCl salts. Acta Materialia 55:16, pages 5304-5309.
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Xian-Hao Wang, Hui Gu, Qing-Wei Huang & Li-Ping You. (2007) Effect of V 2 O 5 doping on the microstructure and local composition of textured Sr 0.4 Ba 0.6 Nb 2 O 6 ceramics . International Journal of Materials Research 98:3, pages 228-234.
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Q.W. Huang, L.H. Zhu, J. Xu, P.L. Wang, H. Gu & Y.B. Cheng. (2005) Effect of V2O5 on sintering behaviour, microstructure and dielectric properties of textured Sr0.4Ba0.6Nb2O6 ceramics. Journal of the European Ceramic Society 25:6, pages 957-962.
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Li-Hui Zhu, Qing-Wei Huang & Hui Gu. (2004) Preparation of acicular strontium barium potassium niobate seed crystals. Journal of Crystal Growth 267:1-2, pages 199-203.
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P.K. Patro, A.R. Kulkarni & C.S. Harendranath. (2004) Dielectric and ferroelectric behavior of SBN50 synthesized by solid-state route using different precursors. Ceramics International 30:7, pages 1405-1409.
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Jyh-Tzong Shiue & Tsang-Tse Fang. (2011) Effect of CeO 2 on the reaction kinetics for the formation of Sr 0.5 Ba 0.5 Ce x Nb 2 O 6+δ . Journal of Materials Research 18:11, pages 2594-2599.
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Myoung-Sup Kim, Joon-Hyung Lee, Jeong-Joo Kim, Hee Young Lee & Sang-Hee Cho. (2002) Microstructure and dielectric characteristics of tungsten bronze structured SBN70 ceramics: effect of Nb2O5 content. Journal of the European Ceramic Society 22:13, pages 2107-2113.
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Jyh-Tzong Shiue & Tsang-Tse Fang. (2002) The sintering behavior of CeO2-doped strontium barium niobate ceramics. Journal of the European Ceramic Society 22:9-10, pages 1705-1709.
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Cihangir Duran, Susan Trolier‐McKinstry & Gary L. Messing. (2004) Fabrication and Electrical Properties of Textured Sr 0.53 Ba 0.47 Nb 2 O 6 Ceramics by Templated Grain Growth . Journal of the American Ceramic Society 83:9, pages 2203-2213.
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Tsang-Tse Fang, Edin Chen & Wen-Jiung Lee. (2000) On the discontinuous grain growth of SrxBa1-xNb2O6 ceramics. Journal of the European Ceramic Society 20:4, pages 527-530.
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Han-Young Lee & R. Freer. (1997) The mechanism of abnormal grain growth in Sr0.6Ba0.4Nb2O6 ceramics. Journal of Applied Physics 81:1, pages 376-382.
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Nobuko S. VanDamme, Audrey E. Sutherland, Lori Jones, Keith Bridger & Stephen R. Winzer. (2005) Fabrication of Optically Transparent and Electrooptic Strontium Barium Niobate Ceramics. Journal of the American Ceramic Society 74:8, pages 1785-1792.
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