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Advances in Applied Ceramics
Structural, Functional and Bioceramics
Volume 112, 2013 - Issue 7
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Original Article

Ferroelectric and dielectric properties in Ba5SmFe1·5Nb8·5O30 tungsten bronze ceramics

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Pages 412-418 | Received 01 Apr 2013, Accepted 23 Jun 2013, Published online: 18 Nov 2013

References

  • Neurgaonkar RR, Nelson JG, Oliver JR: ‘Ferroelectric properties of the tungsten bronze M6(2+) M2(4+) Nb8O30 solid-solution systems’, Mater. Res. Bull., 1992, 27, (6), 677–684.
  • Zheng XH, Chen XM: ‘Crystal structure and dielectric properties of ferroelectric ceramics in the BaO–Sm2O3–TiO2–Nb2O5 system’, Solid State Commun., 2003, 125, (7–8), 449–454.
  • Zheng XH, Chen XM: ‘Dielectric ceramics with tungsten-bronze structure in the BaO–Nd2O3–TiO2–Nb2O5 system’, J. Mater. Res., 2002, 17, 1664–1670.
  • Sun YH, Chen XM, Zheng XH: ‘Tungsten bronze type dielectrics in SrO–Sm2O3–TiO2–Nb2O5 system and their dielectric anomaly’, J. Appl. Phys., 2004, 96, 7435–7439.
  • Bovtun V, Kamba S, Veljko S, Nuzhnyy D, Knížek K, Savinov M, Petzelt J: ‘Relaxor-like behavior of lead-free Sr2LaTi2Nb3O15 ceramics with tetragonal tungsten bronze structure’, J. Appl. Phys., 2007, 101, (1–6), 054115.
  • Zhu XL, Chen XM: ‘Thermal hysteresis of ferroelectric transition in Sr4R2Ti4Nb6O30 (R = Sm & Eu) tetragonal tungsten bronzes’, Appl. Phys. Lett., 2010, 96, (1–3), 032901.
  • Levin I, Stennett MC, Miles GC, Woodward DI, West AR, Reaney IM: ‘Coupling between octahedral tilting and ferroelectric order in tetragonal tungsten bronze-structured dielectrics’, Appl. Phys. Lett., 2006, 89, (1–3), 122908.
  • Zhu XL, Wu SY, Chen XM: ‘Dielectric anomalies in (BaxSr1-X)4Nd2Ti4Nb6O30 ceramics with various radius differences between A1- and A2-site ions’, Appl. Phys. Lett., 2007, 91, (1–3), 162906.
  • Stennett MC, Reaney IM, Miles GC, Woodward DI, West AR, Kirk CA, Levin I: ‘Dielectric and structural studies of Ba2MTi2Nb3O15 (BMTNO15, M = Bi3+,La3+,Nd3+,Sm3+,Gd3+) tetragonal tungsten bronze-structured ceramics’, J. Appl. Phys., 2007, 101, (1–7), 104114.
  • Zhu XL, Chen XM, Liu XQ: ‘Crystal structure and dielectric properties of Sr5RTi3Nb7O30 (R = La, Nd, Sm, and Eu) tungsten bronze ceramics’, J. Am. Ceram. Soc., 2011, 94–96, 1829–1836.
  • Li K, Zhu XL, Liu XQ, Chen XM: ‘Relaxor ferroelectric characteristics of Ba5LaTi3Nb7O30 tungsten bronze ceramics’, Appl. Phys. Lett., 2012, 100, (1–4), 012902.
  • Prades M, Beltrán H, Masó N, Cordoncillo E, West AR: ‘Phase transition hysteresis and anomalous Curie–Weiss behavior of ferroelectric tetragonal tungsten bronzes Ba2RETi2Nb3O15:RE = Nd,Sm’, J. Appl. Phys., 2008, 104, (1–7), 104118.
  • Ganguly P, Jha AK, Deori KL: ‘Structural, dielectric and electrical studies of Ba5−xCaxSmTi3Nb7O30 (x = 0, 1) ferroelectric ceramics’, Asian J. Chem., 2009, 21–10, S022–S027.
  • Ganguly P, Jha AK: ‘Investigations of structural, dielectric and electrical behaviour of calcium substituted Ba5NdTi3Nb7O30 ferroelectric ceramics’, Integr. Ferroelectr., 2010, 115, 149–156.
  • Josse M, Bidault O, Roulland F, Castel E, Simon A, Michau D, Von der Mühll R, Nguyen O, Maglione M: ‘The Ba2LnFeNb4O15 ‘tetragonal tungsten bronze’: towards RT composite multiferroics’, Solid State Sci., 2009, 11, 1118–1123.
  • Castel E., Josse M., Michau D., Maglione1 M.: ‘Flexible relaxor materials: Ba2PrxNd1−xFeNb4O15 tetragonal tungsten bronze solid solution’, J. Phys. Condens. Matter, 2009, 21, (452201), 5.
  • McCabe EE, West AR: ‘New high permittivity tetragonal tungsten bronze dielectrics Ba2LaMNb4O15: M = Mn, Fe’, J. Solid State Chem., 2010, 183, 624–630.
  • Wu YJ, Gu SP, Lin YQ, Hong ZJ, Liu XQ, Chen XM: ‘Multiferroic ceramics in BaO–Y2O3–Fe2O3–Nb2O5 system’, Ceram. Int., 2010, 36, 2415–2420.
  • Bai Y, Zhu XL, Chen XM, Liu XQ: ‘Dielectric and ferroelectric characteristics of Ba5NdFe1.5Nb8.5O30 tungsten bronze ceramics’, J. Am. Ceram. Soc., 2010, 93, (11), 3573–3576.
  • Raevski IP, Prosandeev SA, Bogatin AS, Malitskaya MA, Jastrabik L: ‘High dielectric permittivity in AFe1/2B1/2O3 nonferroelectric perovskite ceramics (A = Ba, Sr, Ca; B = Nb, Ta, Sb)’, J. Appl. Phys., 2003, 93, 4130–4136.
  • Abdelkafi Z, Abdelmoula N, Khemakhem H, Bidault O, Maglione M: ‘Dielectric relaxation in BaTi0.85(Fe1/2Nb1/2)0.15O3 perovskite ceramic’, J. Appl. Phys., 2006, 100, 114111.
  • Wang Z, Chen XM, Ni L, Liu XQ: ‘Dielectric abnormities of complex perovskite Ba(Fe1/2Nb1/2)O3 ceramics over broad temperature and frequency range’, Appl. Phys. Lett., 2007, 90, 022904.
  • Wang Z, Chen XM, Ni L, Liu YY, Liu XQ: ‘Dielectric relaxations in Ba(Fe1/2Ta1/2)O3 giant dielectric constant ceramics’, Appl. Phys. Lett., 2007, 90, 102905.
  • Liu YY, Chen XM, Liu XQ, Li L: ‘Giant dielectric response and relaxor behaviors induced by charge and defect ordering in Sr(Fe1/2Nb1/2)O3 ceramics’, Appl. Phys. Lett., 2007, 90, 192905.
  • Liu Y.Y., Chen X.M., Liu X.Q., Li L., ‘Dielectric relaxations in Ca(Fe1/2Nb1/2)O3 complex perovskite ceramics’, Appl. Phys. Lett., 2007, 90, 262904.
  • Rodriguez-Carvajal J: ‘Recent developments of the program FULLPROF’, Int. Union Crystallog. Newsletter, 2001, 26, 12–19.
  • Ganguly P, Jha AK: ‘Enhanced characteristics of Ba5SmTi3Nb7O30 ferroelectric nanocrystalline ceramic prepared by mechanical activation process: a comparative study’, Mater. Res. Bull., 2011, 46, 692–697.

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