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Ceramics

Influence of grain boundary, defect and internal stress states on properties of ferroelectric materials

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Pages 343-369 | Received 05 May 1992, Published online: 10 Feb 2011

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R.D. Roseman. (1998) High temperature poling effects on conducting barium titanate ceramics. Ferroelectrics 215:1, pages 31-45.
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DavidE. Dausch. (1998) Asymmetric 90° domain switching in rainbow actuators. Ferroelectrics 210:1, pages 31-45.
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J. Kim, R. Roseman & R. C. Buchanan. (1996) Microstructural effects on conductivity in donor doped BaTiO3. Ferroelectrics 177:1, pages 255-271.
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Articles from other publishers (12)

Hong Li, Bo Wu, Cong Lin, Xiao Wu, Tengfei Lin, Min Gao, Hong Tao, Wenjuan Wu & Chunlin Zhao. (2023) Microscopic origin and relevant grain size effect of discontinuous grain growth in BaTiO3-based ferroelectric ceramics. Journal of Materials Science & Technology 164, pages 119-128.
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Marwa Jebli, J. Dhahri, M.A. Albedah, M. Ben Henda, Hafedh Belmabrouk, Mohamed Lamjed Bouazizi & Abdelwaheb Hamdi. (2022) An investigation of the temperature- and frequency- dependent conductivity behavior and electrical properties of Ba0.97La0.02Ti0.9Nb0.08O3 compound using impedance spectroscopy. Journal of Molecular Structure 1254, pages 132238.
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Xiaosong Luo, Lei Wu, Jinbao Huang & Mei Zhou. (2021) Pressure-induced phase transition and electrical properties of yttrium-doped polycrystalline BaTiO3. Journal of Applied Physics 130:24.
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M. Jebli, Ch. Rayssi, J. Dhahri & K. Khirouni. (2020) Investigation of electrical properties and conduction mechanism using CBH model of Ba0.97La0.02Ti1−xNb4x/5O3 (x = 0.00 and 0.02) compounds. Applied Physics A 126:2.
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Dong Zhao, Ilias Katsouras, Kamal Asadi, Wilhelm A. Groen, Paul W. M. Blom & Dago M. de Leeuw. (2016) Retention of intermediate polarization states in ferroelectric materials enabling memories for multi-bit data storage. Applied Physics Letters 108:23.
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Li Xujun, Pan Yong, Gong Yueqiu, Huang Renjie, Liao Jiajia, Xie Shuhong, Zhou Yichun & Gao Xingsen. (2014) Effects of niobium content on electrical and mechanical properties of (Na0.85K0.15)0.5Bi0.5Ti(1-x)Nb x O3 thin films. Journal of Materials Science: Materials in Electronics 25:3, pages 1416-1422.
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I.A. Velasco-Davalos, A. Ruediger, J.J. Cruz-Rivera & C. Gomez-Yanez. (2013) Mechanical niobium doping in barium titanate electroceramics. Journal of Alloys and Compounds 581, pages 56-58.
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M. Paredes-Olguín, I.A. Lira-Hernández, C. Gómez-Yáñez & F.P. Espino-Cortés. (2013) Compensation mechanisms at high temperature in Y-doped BaTiO3. Physica B: Condensed Matter 410, pages 157-161.
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C. Gómez-Yáñez, E. Cruz-Aquino, J.J. Cruz-Rivera & R. Linares-Miranda. (2007) BaTiO3 devices doped with Zr using mechanical alloying. Journal of Alloys and Compounds 434-435, pages 806-808.
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Shu Miao, Jing Zhu, X. W. Zhang & X. H. Chen. (2011) High-energy electron irradiation study of relaxor ferroelectric Pb(Mg 1/3 Nb 2/3 )O 3 and Pb 1− x La x [Mg (1+ x )/3 Nb (2− x )/3 ]O 3 by transmission electron microscopy . Journal of Materials Research 17:10, pages 2615-2620.
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Miyoung Kim, Gerd Duscher, Nigel D. Browning, Karl Sohlberg, Sokrates T. Pantelides & Stephen J. Pennycook. (2001) Nonstoichiometry and the Electrical Activity of Grain Boundaries in . Physical Review Letters 86:18, pages 4056-4059.
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H. Hu & S.B. Krupanidhi. (2011) Current-voltage characteristics of ultrafine-grained ferroelectric Pb(Zr, Ti)O 3 thin films . Journal of Materials Research 9:6, pages 1484-1498.
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