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Phase Transitions
A Multinational Journal
Volume 57, 1996 - Issue 4
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Original Articles

Dielectric and structural relaxation phenomena in Na0.5Bi0.5TiO3 single crystal

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Pages 173-182 | Received 02 Nov 1995, Published online: 19 Aug 2006

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Read on this site (10)

P. Czaja, J. Suchanicz, D. Bochenek, G. Dercz, M. Piasecki & W. Hudy. (2018) High-density lead-free K0.5Bi0.5TiO3 ceramics: preparation, mechanical and dielectric properties. Phase Transitions 91:9-10, pages 1051-1059.
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J. Suchanicz, D. Sitko, Š. Svirskas, M. Ivanov, A. Kežionis, J. Banys, P. Czaja, T. V. Kruzina & J. Szczęsny. (2018) Ferroelectric, dielectric and optic properties of Mn and Cr-doped Na0.5Bi0.5TiO3 single crystals. Ferroelectrics 532:1, pages 38-49.
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J. Suchanicz, E. M. Dutkiewicz, P. Czaja, K. Kluczewska, M. Antonova & A. Sternberg. (2018) SrTiO3-doping effect on dielectric and ferroelectric behavior of Na0.5Bi0.5 TiO3 ceramics. Ferroelectrics 524:1, pages 9-13.
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E.M. Dutkiewicz, J. Suchanicz, K. Konieczny, P. Czaja, K. Kluczewska, H. Czternastek, M. Antonova & A. Sternberg. (2017) Electrical transport in lead-free (Na0.5Bi0.5)1–SrTiO3 ceramics (x = 0, 0.01 and 0.02). Phase Transitions 90:9, pages 824-830.
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E.M. Dutkiewicz, J. Suchanicz, V. Bovtun, K. Konieczny, P. Czaja, K. Kluczewska, B. Handke, M. Antonova & A. Sternberg. (2016) Raman spectra and anomalies of dielectric properties and thermal expansion of lead-free (1−x)Na0.5Bi0.5TiO3-xSrTiO3 (x = 0, 0.08 and 0.1) ceramics. Phase Transitions 89:7-8, pages 823-828.
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J. Suchanicz, M. E. Dutkiewicz, P. Jelen, B. Handke, M. Skolowski, M. Antonova & A. Sternberg. (2016) Influence of Sr addition on structural, dielectric and Raman properties of Na0.5Bi0.5TiO3 ceramics. Integrated Ferroelectrics 173:1, pages 59-64.
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Renata Bujakiewicz-Korońska & Yuriy Natanzon. (2008) Determination of elastic constants of Na0.5Bi0.5TiO3 from ab initio calculations. Phase Transitions 81:11-12, pages 1117-1124.
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J. Kusz, J. Suchanicz, H. Böhm & J. Warczewski. (1999) High temperature X-ray single crystal study of Na1/2Bi1/2TiO3 . Phase Transitions 70:3, pages 223-229.
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Jan Suchanicz. (1998) Behaviour of Na0.5Bi0.5TiO3 ceramics in the a.c. electric field. Ferroelectrics 209:1, pages 561-568.
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Jan Suchanicz. (1997) Time evolution of the phase transformation in Na0.5Bi0.5TiO3 . Ferroelectrics 200:1, pages 319-325.
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Articles from other publishers (18)

Khushboo Thapa, Priyanka Thankur, Navdeep Sharma, Sanjeev Sharma, Asad Ali, Abid Zaman & Madan Lal. (2022) Structural and Dielectric Properties of Ba-Doped BNT Ceramics. Journal of Basic & Applied Sciences 18, pages 47-57.
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J. Suchanicz, M. Nowakowska-Malczyk, A. Kania, A. Budziak, K. Kluczewska-Chmielarz, P. Czaja, D. Sitko, M. Sokolowski, A. Niewiadomski & T.V. Kruzina. (2021) Effects of electric field poling on structural, thermal, vibrational, dielectric and ferroelectric properties of Na0.5Bi0.5TiO3 single crystals. Journal of Alloys and Compounds 854, pages 157227.
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Pin-Yi Chen, Cheng-Sao Chen, Chi-Shun Tu & Ting-Lun Chang. (2014) Large E-field induced strain and polar evolution in lead-free Zr-doped 92.5%(Bi0.5Na0.5)TiO3–7.5%BaTiO3 ceramics. Journal of the European Ceramic Society 34:16, pages 4223-4233.
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M. Woll, M. Burianek, D. Klimm, S. Gorfman & M. Mühlberg. (2014) Characterization of (Bi0.5Na0.5)1−Ba TiO3 grown by the TSSG method. Journal of Crystal Growth 401, pages 351-354.
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Pin-Yi Chen, Cheng-Sao Chen, Chi-Shun Tu, Chun-Der Cheng & Jyh-Shiarn Cherng. (2014) Relaxor effect on electric field induced large strain in (1−x)(Bi0.5Na0.5)TiO3–xBaTiO3 lead-free piezoceramics. Ceramics International 40:4, pages 6137-6142.
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Matias Acosta, Jiadong Zang, Wook Jo & Jürgen Rödel. (2012) High-temperature dielectrics in CaZrO3-modified Bi1/2Na1/2TiO3-based lead-free ceramics. Journal of the European Ceramic Society 32:16, pages 4327-4334.
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Wenwei Ge, Jiefang Li & D. Viehland. 2012. Lead-Free Piezoelectrics. Lead-Free Piezoelectrics 3 52 .
Wenwei Ge, Hu Cao, Christopher DeVreugd, Jiefang Li, Dwight Viehland, Qinhui Zhang & Haosu Luo. (2011) Influence of BaTiO3 Content on the Structure and Properties of Na0.5Bi0.5TiO3 Crystals. Journal of the American Ceramic Society 94:9, pages 3084-3087.
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Matjaž Spreitzer & Danilo Suvorov. (2011) Electrical Characteristics of Na0.5Bi0.5TiO3-Li0.45La0.52□0.03TiO3 System. Journal of the American Ceramic Society 94:7, pages 2104-2108.
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Wenwei Ge, Jianjun Yao, Liang Luo, Christopher P. Devreugd, Jiefang Li, D. Viehland, Qinhui Zhang & Haosu Luo. (2010) Nucleation of Rhombohedral Regions Within a Tetragonal Matrix in Mn‐Doped Na 0.5 Bi 0.5 TiO 3 Crystals: Origins of a Diffuse Transformation, Thermal Hysteresis, and Isotropization . Journal of the American Ceramic Society 94:2, pages 478-481.
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Wenwei Ge, Jianjun Yao, Christopher DeVreugd, Jiefang Li, D. Viehland, Qinhui Zhang & Haosu Luo. (2011) Electric field dependent phase stability and structurally bridging orthorhombic phase in crystals near the MPB. Solid State Communications 151:1, pages 71-74.
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K. G. Webber, Y. Zhang, Wook Jo, J. E. Daniels & J. Rödel. (2010) High temperature stress-induced “double loop-like” phase transitions in Bi-based perovskites. Journal of Applied Physics 108:1, pages 014101.
Crossref
V. Dorcet & G. Trolliard. (2008) A transmission electron microscopy study of the A-site disordered perovskite Na0.5Bi0.5TiO3. Acta Materialia 56:8, pages 1753-1761.
Crossref
Matjaž Spreitzer, Matjaž Valant & Danilo Suvorov. (2007) Sodium deficiency in Na 0.5 Bi 0.5 TiO 3 . J. Mater. Chem. 17:2, pages 185-192.
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Annie Simon, Gi-Tae Joo, Mario Maglione & Jean Ravez. (2007) Anisotropic polar state of Sr0.75Ba0.25Nb2O6 single crystal. Solid State Sciences 9:1, pages 52-56.
Crossref
K Roleder, I Franke, A M Glazer, P A Thomas, S Miga & J Suchanicz. (2002) The piezoelectric effect in Na0.5Bi0.5TiO3 ceramics. Journal of Physics: Condensed Matter 14:21, pages 5399-5406.
Crossref
J Suchanicz. (2001) Axial pressure effect on a phase transition nature and ferroelectric properties of single crystal Na0.5Bi0.5TiO3. Journal of Physics and Chemistry of Solids 62:7, pages 1271-1276.
Crossref
J. Suchanicz, A. Jeżowski & R. Poprawski. (1998) Low-Temperature Thermal and Dielectric Properties of Na0.5Bi0.5TiO3. physica status solidi (a) 169:2, pages 209-215.
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