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Original Articles

Low-frequency dielectric responses in PMN-type ceramics

Pages 377-382 | Published online: 15 Mar 2011

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Naima Zidi, Ahcene Chaouchi, Mohamed Rguiti, Yannick Lorgouilloux & Christian Courtois. (2019) Dielectric, ferroelectric, piezoelectric properties, and impedance spectroscopy of (Ba0.85Ca0.15)(Ti0.9 Zr0.1)O3-x% (K0.5Bi0.5)TiO3 lead-free ceramics. Ferroelectrics 551:1, pages 152-177.
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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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Articles from other publishers (29)

Saurabh Singh, Raghvendra Pandey, Gaurav Gautam, Anjani Kumar Singh, Bheeshma Pratap Singh, Asha Dhaiya & Prabhakar Singh. 2024. Recent Advances in Functional Materials and Devices. Recent Advances in Functional Materials and Devices 235 244 .
Saurabh K. Sharma, Hari S. Mohanty, Dillip K. Pradhan, Ajay Kumar, Vivek K. Shukla, Fouran Singh & Pawan K. Kulriya. (2020) Structural, dielectric and electrical properties of pyrochlore-type Gd2Zr2O7 ceramic. Journal of Materials Science: Materials in Electronics 31:24, pages 21959-21970.
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A. Neqali, A. Belboukhari, H. Bensaid, A. El Bouari, L. Bih, A. Alimoussa, S. Habouti & D. Mezzane. (2016) Diffuse phase transition and impedance spectroscopy analysis of Ba2.15−x Na0.7+x Nb5−x W x O15 (x = 0.25) ferroelectric ceramic. Applied Physics A 122:6.
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H. Nefzi & F. Sediri. (2015) Vanadium oxide nanourchins: Hydrothermal synthesis, characterization, frequency dependent electrical properties. Ceramics International 41:1, pages 1391-1399.
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Andrzej Osak. (2014) Ultralow frequency dielectric dispersion in PZT + PFS ferroelectric ceramic. Journal of Advanced Dielectrics 04:03, pages 1450021.
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A. Belboukhari, E. Choukri, Y. Gagou, R. Elmoznine, N. Abdelmoula, A. Neqali, M. El Marssi, H. Khemakhem & D. Mezzane. (2014) Investigation on relaxation and conduction mechanism in Pb0.75K0.5Nb2O6 new ferroelectric ceramic. Superlattices and Microstructures 71, pages 7-22.
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B. N. Parida, Piyush R. Das, R. Padhee & R. N. P. Choudhary. (2013) Impedance analysis in Li2Pb2R2W2Ti4Nb4O30 (R = Y, Eu) ceramics. Journal of Materials Science: Materials in Electronics 24:12, pages 4798-4806.
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Paramjeet Singh, Ashish Agarwal, Sujata Sanghi, Navneet Singh & Satish Khasa. (2012) Study of (Bi2O3)(BaxMo1−xO3) polycrystalline ceramic as relaxor ferroelectric. Physica B: Condensed Matter 407:24, pages 4752-4759.
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L. Biswal, Piyush R. Das, Banarji Behera & R. N. P. Choudhury. (2012) Structural, dielectric and conductivity studies of Na2Pb2La2W2Ti4Nb4O30 ferroelectric ceramic. Journal of Electroceramics 29:3, pages 204-210.
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E. K. Abdel-Khalek, Shaaban M. Salem & I. Kashif. (2012) Synthesis, crystal structure and ferroelectric properties of SrBi2Nb2O9 embedded in a 50 % Li2B4O7 glass matrix. Journal of Electroceramics 29:3, pages 171-178.
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R. ELWEJ, A. OUESLATI & F. HLEL. (2013) ELECTRICAL AND DIELECTRIC PROPERTIES OF C 7 H 12 N 2 [H 2 PO 4 ] 2 ⋅ 1/2H 2 O . Journal of Advanced Dielectrics 02:04, pages 1230014.
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A. Belboukhari, Z. Abkhar, Y. Gagou, J. Belhadi, R. Elmoznine, D. Mezzane, M. El Marssi & I. Luk’yanchuk. (2012) Dielectric properties and relaxation phenomena in the diffuse ferroelectric phase transition in K3Li2Nb5O15 ceramic. The European Physical Journal B 85:6.
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D. Kajewski & Z. Ujma. (2011) Impedance analysis of thermally modified SrBi2(Nb0.5Ta0.5)2O9 ceramics. Journal of Alloys and Compounds 509:27, pages 7532-7536.
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P. K. BAJPAI & K. N. SINGH. (2011) DIELECTRIC RELAXATION AND ELECTRICAL STUDY OF BaNb 2 O 6 PREPARED BY SOL–GEL ROUTE . Modern Physics Letters B 25:14, pages 1229-1239.
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M.P. Dasari, K. Sambasiva Rao, P. Murali Krishna & G. Gopala Krishna. (2011) Barium Strontium Bismuth Niobate Layered Perovskites: Dielectric, Impedance and Electrical Modulus Characteristics. Acta Physica Polonica A 119:3, pages 387-394.
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E. Choukri, Y. Gagou, D. Mezzane, Z. Abkhar, R. El Moznine, I. Luk'yanchuk, P. Saint-Grégoire & A. V. Kavokin. (2011) Dielectric and structural properties of diffuse ferroelectric phase transition in Pb 1.85 K 1.15 Li 0.15 Nb 5 O 15 ceramic . The European Physical Journal Applied Physics 53:2, pages 20901.
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Karuna Nidhan Singh & Parmendra Kumar Bajpai. (2011) Dielectric Relaxation in Pure Columbite Phase of SrNb<sub>2</sub>O<sub>6</sub> Ceramic Material: Impedance Analysis. World Journal of Condensed Matter Physics 01:02, pages 37-48.
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K.N. Singh & P.K. Bajpai. (2010) Synthesis, characterization and dielectric relaxation of phase pure columbite MgNb2O6: Optimization of calcination and sintering. Physica B: Condensed Matter 405:1, pages 303-312.
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D. Kajewski & Z. Ujma. (2010) Electrical properties of SrBi2(Nb0.5Ta0.5)2O9 ceramics. Journal of Physics and Chemistry of Solids 71:1, pages 24-29.
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K. Sambasiva Rao, P. Murali Krishna, D. Madhava Prasad & Joon Hyung Lee. (2009) Electrical and electromechanical properties of lead–potassium–yttrium–niobate ceramics—piezoelectric applications. Journal of Physics and Chemistry of Solids 70:9, pages 1231-1241.
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K. Sambasiva Rao, P. Murali Krishna, D. Madhava Prasad, Joon-Hyung Lee & Jin-Soo Kim. (2008) Electrical, electromechanical and structural studies of lead potassium samarium niobate ceramics. Journal of Alloys and Compounds 464:1-2, pages 497-507.
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K. Sambasiva Rao, D. Madhava Prasad, P. Murali Krishna & Joon-Hyung Lee. (2008) Synthesis, electrical and electromechanical properties of a tungsten-bronze ceramic oxide: Pb0.68K0.64Nb2O6. Physica B: Condensed Matter 403:12, pages 2079-2087.
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K. S. Rao, P. M. Krishna, D. M. Prasad, T. S. Latha & M. Hussain. (2007) Frequency dependent electrical characteristics of ferroelectric Pb 4.0 K 1.0 Li 1.0 Nb 10 O 30 ceramics . The European Physical Journal Applied Physics 39:3, pages 237-249.
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Konapala Sambasiva Rao, Dasari Madhava Prasad, Prayaga Murali Krishna, B. Hima Bindu & K. Suneetha. (2007) Frequency and temperature dependence of electrical properties of barium and gadolinium substituted SrBi2Nb2O9 ceramics. Journal of Materials Science 42:17, pages 7363-7374.
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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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Dhak Debasis, Ghorai K. Tanmay & Pramanik Panchanan. (2007) Studies of dielectric characteristics of BaBi2Nb2O9 ferroelectrics prepared by chemical precursor decomposition method. Solid State Sciences 9:1, pages 57-64.
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Puja Goel & K.L. Yadav. (2006) Effect of V+5 doping on Structural and Dielectric properties of SrBi2Nb2O9 Synthesized at low Temperature. Physica B: Condensed Matter 382:1-2, pages 245-251.
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B. Harihara Venkataraman & K.B.R. Varma. (2003) Impedance and dielectric studies of ferroelectric SrBi2Nb2O9 ceramics. Journal of Physics and Chemistry of Solids 64:11, pages 2105-2112.
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Fan Chu, Hong‐Tao Sun, Liang‐Ying Zhang & Xi Yao. (2005) Temperature Dependence of Ultra‐Low‐Frequency Dielectric Relaxation of Barium Titanate Ceramic. Journal of the American Ceramic Society 75:11, pages 2939-2944.
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