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Original Articles

Local atomic structure of relaxor ferroelectric solids determined by pulsed neutron and x-ray scattering

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Pages 103-113 | Received 07 Jul 1996, Published online: 07 Mar 2011

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K.S. Rao, P.M. Krishna, D.M. Prasad, T.S. Latha & C. Satyanarayana. (2008) Dielectric spectroscopy characteristics of ferroelectric Pb0.77K0.26Li0.2Ti0.25Nb1.8O6 ceramics. Philosophical Magazine 88:26, pages 3129-3143.
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V. Ya. Shur, E.L. Rumyantsev, G.G. Lomakin, O.V. Yakutova, D.V. Pelegov, A. Sternberg & M. Kosec. (2005) Field Induced Evolution of Nanoscale Structures in Relaxor PLZT Ceramics. Ferroelectrics 316:1, pages 23-29.
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V. Efimov, A. Kalmikov, E. Klotins, V. Minashkin, A. Sternberg & S. Tiutiunnikov. (2001) Study on the phonon spectra of lanthanum modified lead zirconate titanate ceramics. Ferroelectrics 257:1, pages 39-50.
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Takeshi Egami. (1999) Microscopic model of relaxor phenomena in Pb containing mixed oxides. Ferroelectrics 222:1, pages 163-170.
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Articles from other publishers (28)

Kaustuv Datta, Reinhard B. Neder, Jun Chen, Joerg C. Neuefeind & Boriana Mihailova. (2017) Atomic-level structural correlations across the morphotropic phase boundary of a ferroelectric solid solution: xBiMg1/2Ti1/2O3-(1 − x)PbTiO3. Scientific Reports 7:1.
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Alexandre Mesquita, Alain Michalowicz, Jacques Moscovici, Paulo Sergio Pizani & Valmor Roberto Mastelaro. (2016) Relationship between ferroelectric properties and local structure of Pb1−xBaxZr0.40Ti0.60O3 ceramic materials studied by X-ray absorption and Raman spectroscopies. Journal of Solid State Chemistry 240, pages 16-22.
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K. Datta, A. Richter, M. Göbbels, D. A. Keen & R. B. Neder. (2016) Direct mapping of microscopic polarization in ferroelectric throughout its morphotropic phase boundary . Physical Review B 93:6.
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A. Mesquita, A. Michalowicz & V.R. Mastelaro. (2015) XANES measurements probing the local order and electronic structure of Pb1−xBaxZr0.40Ti0.60O3 ferroelectric materials. Journal of Alloys and Compounds 640, pages 355-361.
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V. Ya. Shur & P. S. Zelenovskiy. (2014) Micro- and nanodomain imaging in uniaxial ferroelectrics: Joint application of optical, confocal Raman, and piezoelectric force microscopy. Journal of Applied Physics 116:6.
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A. Mesquita, A. Michalowicz, P.S. Pizani, K. Provost & V.R. Mastelaro. (2014) Local order of Pb1−xLaxZr0.40Ti0.60O3 ferroelectric ceramic materials probed by X-ray absorption and Raman spectroscopies. Journal of Alloys and Compounds 582, pages 680-687.
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A. Mesquita, B. M. Fraygola, V. R. Mastelaro & J. A. Eiras. (2013) Fe K-edge X-ray absorption spectroscopy study of Pb(Fe 2/3 W 1/3 )O 3 -PbTiO 3 multiferroic ceramics . Journal of Applied Physics 113:11, pages 114104.
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Elena Aksel, Jennifer S. Forrester, Juan C. Nino, Katharine Page, Daniel P. Shoemaker & Jacob L. Jones. (2013) Local atomic structure deviation from average structure of Na Bi TiO : Combined x-ray and neutron total scattering study . Physical Review B 87:10.
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Parmendra Kumar Bajpai. (2012) Dielectric Relaxation Phenomena in some Lead and Non-Lead Based Ferroelectric Relaxor Materials: Recent Advances. Solid State Phenomena 189, pages 233-266.
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A. Mesquita, A. Michalowicz & V. R. Mastelaro. (2012) Local order and electronic structure of Pb1−xLaxZr0.40Ti0.60O3 materials and its relation with ferroelectric properties. Journal of Applied Physics 111:10.
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Egami Takeshi & Simon J.L. Billinge. 2012. Underneath the Bragg Peaks - Structural Analysis of Complex Materials. Underneath the Bragg Peaks - Structural Analysis of Complex Materials 325 369 .
K. SAMBASIVA RAO, D. MADHAVA PRASAD, P. MURALI KRISHNA & JOON HYUNG LEE. (2011) FERROELECTRIC AND PIEZOELECTRIC PROPERTIES OF Gd 3+ AND Y 3+ MODIFIED PKN ELECTROCERAMICS . Modern Physics Letters B 22:15, pages 1515-1523.
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V.Y. Shur. 2008. Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials. Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials 622 669 .
Katharine Page, Matthew W. Stoltzfus, Young-Il Kim, Thomas Proffen, Patrick M. Woodward, Anthony K. Cheetham & Ram Seshadri. (2007) Local Atomic Ordering in BaTaO 2 N Studied by Neutron Pair Distribution Function Analysis and Density Functional Theory . Chemistry of Materials 19:16, pages 4037-4042.
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K. Sambasiva Rao, P. Murali Krishna & D. Madhava Prasad. (2007) Effect of simultaneous substitution of Li + and Ti 4+ in ceramics of Pb 2 KNb 5 O 15 on structure, dielectric, modulus, impedance and conductivity properties . physica status solidi (b) 244:6, pages 2267-2287.
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Karin M. Rabe, Matthew Dawber, Céline Lichtensteiger, Charles H. Ahn & Jean-Marc Triscone. 2007. Physics of Ferroelectrics. Physics of Ferroelectrics 1 30 .
V. Ya. Shur. (2005) Polarization Switching in Heterophase Nanostructures: PLZT Relaxor Ceramics. Physics of the Solid State 47:7, pages 1340.
Crossref
Person P. Neves, Antonio C. Doriguetto, Valmor R. Mastelaro, Luiz P. Lopes, Yvonne P. Mascarenhas, Alain Michalowicz & José A. Eiras. (2004) XAS and XRD Structural Characterization of Lanthanum-Modified PbTiO 3 Ceramic Materials . The Journal of Physical Chemistry B 108:39, pages 14840-14849.
Crossref
K Bhattacharya & G Ravichandran. (2003) Ferroelectric perovskites for electromechanical actuation. Acta Materialia 51:19, pages 5941-5960.
Crossref
. 2003. Underneath the Bragg Peaks, Structural Analysis of Complex Materials. Underneath the Bragg Peaks, Structural Analysis of Complex Materials 339 358 .
H El Alaoui-Belghiti, R Von der Mühll, A Simon, M Elaatmani & J Ravez. (2002) Relaxor or classical ferroelectric behavior in ceramics with composition Sr2−xA1+xNb5O15−xFx (A = Na, K). Materials Letters 55:3, pages 138-144.
Crossref
Hanan El Alaoui Belghiti, Annie Simon, Pierre Gravereau, Antoine Villesuzanne, Mohamed Elaatmani & Jean Ravez. (2002) Ferroelectric and crystallographic properties of the Sr2−xK1+xNb5O15−xFx solid solution. Solid State Sciences 4:7, pages 933-940.
Crossref
W. Dmowski, M.K. Akbas, T. Egami & P.K. Davies. (2002) Structure refinement of large domain relaxors in the Pb(Mg1/3Ta2/3)O3–PbZrO3 system. Journal of Physics and Chemistry of Solids 63:1, pages 15-22.
Crossref
V. Hornebecq, C. Elissalde, P. Gravereau, E. Lebraud & J. Ravez. (2001) Effect of Cationic Substitutions on Ferroelectric Properties of Pb5Ta10O30: Generation of the Relaxor Behavior. Journal of Solid State Chemistry 157:2, pages 261-273.
Crossref
N. Sicron, E.A. Stern & Y. Yacoby. (2000) The relation between the local and the average structure of rhombohedral ferroelectric PbHf0.9Ti0.1O3. Journal of Physics and Chemistry of Solids 61:2, pages 243-249.
Crossref
N. Kristoffel. 2000. Defects and Surface-Induced Effects in Advanced Perovskites. Defects and Surface-Induced Effects in Advanced Perovskites 113 124 .
Noel W Thomas, Sergey A Ivanov, Supon Ananta, Roland Tellgren & Häkan Rundlof. (1999) New evidence for rhombohedral symmetry in the relaxor ferroelectric Pb(Mg1/3Nb2/3)O3. Journal of the European Ceramic Society 19:15, pages 2667-2675.
Crossref
V. Hornebecq, C. Elissalde, J. M. Reau & J. Ravez. (1998) Wide Frequency Range Dispersion and Relaxations in Ceramics of the K6Li4Ta10O30–Pb5Ta10O30 System. physica status solidi (a) 169:2, pages 311-320.
Crossref

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