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Original Articles

A domain wall model for relaxor ferroelectrics

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Pages 245-263 | Received 15 Jul 1997, Published online: 07 Mar 2011

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A. F. Vakulenko, S. B. Vakhrushev & A. V. Filimonov. (2019) Investigation of polarization switching processes in 0.8PMN-0.2PT single crystal in a temperature range from 100 K to 300 K. Ferroelectrics 542:1, pages 77-84.
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A.Yu. Belov , W.S. Kreher & M. Nicolai. (2009) The Evaluation of Activation Parameters for Ferroelectric Switching in Soft PZT Ceramics. Ferroelectrics 391:1, pages 42-50.
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R. Castañeda-Guzmán, Alfonso Huanosta-Tera, L. Baños, Mario Fernandez-Zamora & S.J. Pérez-Ruiz. (2009) Pulsed Photoacoustic: A Reliable Technique to Investigate Diffuse Phase Transitions and Associated Phenomena in Ferroelectrics. Ferroelectrics 386:1, pages 50-61.
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A. Fernández-Osorio, R. Castañeda-Guzmán, A. Vázquez-Olmos & Alfonso Huanosta-Tera. (2007) Photoacoustic and Dielectric Study of Lead Zirconate Titanate Nanoparticles. Ferroelectrics 361:1, pages 92-104.
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V.V. Shvartsman & E.D. Politova. (2001) Thermal behaviour of polarization in relaxor ferroelectrics Pb(Mg1/2W1/2)1−xTixO3 . Ferroelectrics 257:1, pages 75-84.
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Articles from other publishers (24)

Aleksandr F. Vakulenko, Anton Yu. Molokov, Ekaterina Yu. Koroleva, Alexey V. Deyneka & Sergey B. Vakhrushev. (2023) Coercive Field Values and Shape Features of FE Loops in PMN-20PT at Low Temperatures. Coercive Field Values and Shape Features of FE Loops in PMN-20PT at Low Temperatures.
Ajeet Kumar, Nitin Jaglan, Anamol Gautam, Sudhanshu Dhumrash, Kamaldeep Kaur & Poonam Uniyal. (2023) Impedance spectroscopy, pyroelectric and electrocaloric response of sol gel synthesized 0.94Bi0.5Na0.5TiO3–0.06BaTiO3 ceramics. Applied Physics A 129:10.
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Alla Lebedinskaya & Angela Rudskaya. Parameters structure calculation of nonstoichiometric Pb(Mg1-yNby)O3-z solid solutions. Parameters structure calculation of nonstoichiometric Pb(Mg1-yNby)O3-z solid solutions.
Yao Liu, Fan Ye, Houbo Zhou, Xin Song, Wentao Jia, Andong Xiao, Jing Wang, Sheng Dai, Tianyu Ma, Fengxia Hu & Baogen Shen. (2022) Sensitive electric field control of first-order phase transition in epitaxial multiferroic heterostructures. Acta Materialia 237, pages 118145.
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Liao Qiao, Song Xia, Xiangyu Gao, Yangbin Liu, Kexin Song, Haisheng Guo, Zhuo Xu & Fei Li. (2021) Frequency Dependence of Coercive Fields of [001]- and [011]-Poled Rhombohedral Pb(In 1/2 Nb 1/2 )O₃-Pb(Mg 1/3 Nb 2/3 )O₃-PbTiO₃ Single Crystals . IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control 68:4, pages 1430-1436.
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Jialin Wang, Mingyo Park & Azadeh Ansari. (2021) Thermal Characterization of Ferroelectric Aluminum Scandium Nitride Acoustic Resonators. Thermal Characterization of Ferroelectric Aluminum Scandium Nitride Acoustic Resonators.
Lakhbir Singh, Baljinder Kaur, Tarun Garg, Vishal Sharma, Navneet Dabra & Jasbir S. Hundal. (2021) Fitting IGM, FGM and NLS switching models to NaNO2-PVA composite transients for its microscopic parameter estimation. Materials Today: Proceedings 46, pages 8340-8346.
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Zibin Chen, Qianwei Huang, Feifei Wang, Simon P. Ringer, Haosu Luo & Xiaozhou Liao. (2018) Stress-induced reversible and irreversible ferroelectric domain switching. Applied Physics Letters 112:15.
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Zibin Chen, Liang Hong, Feifei Wang, Xianghai An, Xiaolin Wang, Simon Ringer, Long-Qing Chen, Haosu Luo & Xiaozhou Liao. (2017) Kinetics of Domain Switching by Mechanical and Electrical Stimulation in Relaxor-Based Ferroelectrics. Physical Review Applied 8:6.
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Yang Zhang, Zhaojiang Chen, Wenwu Cao & Zhongwu Zhang. (2017) Temperature and frequency dependence of the coercive field of 0.71PbMb1/3Nb2/3O3–0.29PbTiO3 relaxor-based ferroelectric single crystal. Applied Physics Letters 111:17.
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Jonathan Gardner & Finlay D. Morrison. (2016) Manipulation of polar order in the “empty” tetragonal tungsten bronzes: Ba4-xSrxDy0.67□1.33Nb10O30, x  = 0, 0.25, 0.5, 1, 2, 3 . Applied Physics Letters 109:7.
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Bangmin Zhang, Cheng-Jun Sun, Weiming Lü, T. Venkatesan, Myung-Geun Han, Yimei Zhu, Jingsheng Chen & Gan Moog Chow. (2015) Electric-field-induced strain effects on the magnetization of a film . Physical Review B 91:17.
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Paul C.-P. Chao, Pen-Yen Liao, Meng-Yen Tsai & Chin-Teng Lin. (2011) Robust control design for precision positioning of a generic piezoelectric system with consideration of microscopic hysteresis effects. Microsystem Technologies 17:5-7, pages 1009-1023.
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A. Simon & J. Ravez. 2008. Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials. Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials 896 929 .
Changhai Ru & Lining Sun. (2006) Study of polarization control model for piezoelectric actuator. Ultrasonics 44, pages e731-e735.
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Annie Simon & Jean Ravez. (2006) Solid-state chemistry and non-linear properties of tetragonal tungsten bronzes materials. Comptes Rendus. Chimie 9:10, pages 1268-1276.
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Ralph C. SmithCraig L. Hom. (2016) A Temperature-dependent Constitutive Model for Relaxor Ferroelectrics. Journal of Intelligent Material Systems and Structures 16:5, pages 433-448.
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M. H. Lente, A. Picinin, J. P. Rino & J. A. Eiras. (2004) 90° domain wall relaxation and frequency dependence of the coercive field in the ferroelectric switching process. Journal of Applied Physics 95:5, pages 2646-2653.
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A. Picinin, M. H. Lente, J. A. Eiras & J. P. Rino. (2004) Theoretical and experimental investigations of polarization switching in ferroelectric materials. Physical Review B 69:6.
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J. Ravez & A. Simon. (2001) Some Solid State Chemistry Aspects of Lead-Free Relaxor Ferroelectrics. Journal of Solid State Chemistry 162:2, pages 260-265.
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I.W. Chen. (2000) Structural origin of relaxor ferroelectrics—revisited. Journal of Physics and Chemistry of Solids 61:2, pages 197-208.
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Ralph C. SmithZoubeida Ounaies. (2016) A Domain Wall Model for Hysteresis in Piezoelectric Materials. Journal of Intelligent Material Systems and Structures 11:1, pages 62-79.
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Ralph C. Smith & Craig L. Hom. (2016) Domain Wall Theory for Ferroelectric Hysteresis. Journal of Intelligent Material Systems and Structures 10:3, pages 195-213.
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R.C. Smith & Z. Ounaies. (2011) A Model for Asymmetric Hysteresis in Piezoceramic Materials. MRS Proceedings 604.
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