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Original Articles

Substitution effects on the relaxor properties of lead magnesium niobate ceramics

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Pages 435-448 | Received 15 Jun 1998, Accepted 08 Aug 1998, Published online: 20 Aug 2009

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S. Praharaj, A. Singha & D. Rout. (2022) Electrical properties of 0.7Na0.5Bi0.5TiO3-0.2SrTiO3-0.1BaTiO3 lead free ceramic: An Off-Morphotropic phase boundary composition. Materials Today: Proceedings 49, pages 333-338.
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Pooja Sahlot, Suchita Pandey, Adityanarayan Pandey & A. M. Awasthi. (2020) Harmonic magneto-dielectric study in doped-, double-, and layered-perovskites. Journal of Applied Physics 127:15.
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Adityanarayan H. Pandey & Surya Mohan Gupta. (2020) Role of charge compensation mechanism on phase formation, dielectric and ferroelectric properties in aliovalent Gd3+ ion modified PbMg1/3Nb2/3O3 ceramics. Materials Science and Engineering: B 253, pages 114495.
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Adityanarayan H. Pandey, V.R. Reddy, A.K. Nigam & Surya Mohan Gupta. (2019) Investigation of re-entrant relaxor behaviour in lead cobalt niobate ceramic. Acta Materialia 177, pages 160-168.
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Laijun Liu, Shaokai Ren, Jie Zhang, Biaolin Peng, Liang Fang & Dawei Wang. (2018) Revisiting the temperature-dependent dielectric permittivity of Ba(Ti 1− x Zr x )O 3 . Journal of the American Ceramic Society 101:6, pages 2408-2416.
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Adityanarayan H. Pandey, S. M. Gupta, N. P. Lalla & A. K. Nigam. (2017) Critical slowing down of polar nano regions ensemble in Gd3+-substituted PbMg1/3Nb2/3O3 ceramics. Journal of Applied Physics 122:4.
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Adityanarayan H. Pandey, Vasant G. Sathe & Surya M. Gupta. (2016) Raman spectroscopic investigation of Gd-substituted lead magnesium niobate ceramics Pb1−Gd (Mg1+/3Nb2−/3)O3 (0 ≤ x ≤ 0.1). Journal of Alloys and Compounds 682, pages 180-187.
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Adityanarayan H Pandey, Arvind K Srivastava, Anil K Sinha & Surya M Gupta. (2015) Investigation of structural, dielectric and ferroelectric properties of Gd-doped lead magnesium niobate ceramics. Materials Research Express 2:9, pages 096303.
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Chaoliang Mao, Xianlin Dong, Genshui Wang, Sheng Cao, Chunhua Yao & Kenji Uchino. (2010) Microscopic Region Effect on the Dielectric Property of the Diffused Phase Transition Ferroelectrics: A Reasonable and Effective Diffuseness Characterizing Parameter. Journal of the American Ceramic Society 93:12, pages 4011-4014.
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Gurvinderjit Singh & V. S. Tiwari. (2009) Effect of Zr concentration on conductivity behavior of (1−x)PMN-xPZ ceramic: An impedance spectroscopy analysis. Journal of Applied Physics 106:12.
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R.K. Mishra, R.N.P. Choudhary & Awalendra K. Thakur. (2008) Preparation and analysis of single-phase Pb(Mn1/2Nb1/2)O3. Journal of Alloys and Compounds 457:1-2, pages 490-497.
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Chao Lei, Kepi Chen & Xiaowen Zhang. (2004) Structure and dielectric relaxation behavior near the MPB for Pb(Mg1/3Nb2/3)O3–Pb(Ni1/3Nb2/3)O3–PbTiO3 ferroelectric ceramics. Materials Science and Engineering: B 111:2-3, pages 107-112.
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A. A. Bokov, Y.-H. Bing, W. Chen, Z.-G. Ye, S. A. Bogatina, I. P. Raevski, S. I. Raevskaya & E. V. Sahkar. (2003) Empirical scaling of the dielectric permittivity peak in relaxor ferroelectrics. Physical Review B 68:5.
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O. Bidault, C. Perrin, C. Caranoni & N. Menguy. (2001) Chemical order influence on the phase transition in the relaxor Pb(Sc1/2Nb1/2)O3. Journal of Applied Physics 90:8, pages 4115-4121.
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H. Z. Jin, Jing Zhu, Shu Miao, X. W. Zhang & Z. Y. Cheng. (2001) Ordered domains and polar clusters in lead magnesium niobate Pb(Mg1/3Nb2/3)O3. Journal of Applied Physics 89:9, pages 5048-5052.
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A.A Bokov & Z.-G Ye. (2000) Phenomenological description of dielectric permittivity peak in relaxor ferroelectrics. Solid State Communications 116:2, pages 105-108.
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