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Original Articles

Chemical bonding, a relevant tool for designing new perovskite-type ferroelectric materials

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Pages 161-173 | Received 05 Oct 1995, Published online: 07 Mar 2011

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Shah Qasim Jan, Muhammad Usman, M. Naveed-Ul-Haq & Arif Mumtaz. (2018) A study of relaxation effects in (1-x)BaZr0.2Ti0.8O3-xBa0.7Ca0.3TiO3 (x = 0.3, 0.35, 0.4) ferroelectric ceramics. Journal of Alloys and Compounds 735, pages 1893-1900.
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Fikadu Alema & Konstantin Pokhodnya. (2016) Dielectric properties of BaMg1∕3Nb2∕3O 3 doped Ba 0.45 Sr 0.55 Tio 3 thin films for tunable microwave applications . Journal of Advanced Dielectrics 05:04, pages 1550030.
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Fikadu Alema, Michael Reich, Aaron Reinholz & Konstantin Pokhodnya. (2013) Effect of concurrent Mg/Nb-doping on dielectric properties of Ba0.45Sr0.55TiO3 thin films. Journal of Applied Physics 114:8.
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Prasanna V. Balachandran, Scott R. Broderick & Krishna Rajan. (2011) Identifying the ‘inorganic gene’ for high-temperature piezoelectric perovskites through statistical learning. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 467:2132, pages 2271-2290.
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A. Simon & J. Ravez. 2008. Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials. Handbook of Advanced Dielectric, Piezoelectric and Ferroelectric Materials 896 929 .
F. Bahri, H. Khemakhem, A. Simon, R. Von Der Mühll & J. Ravez. (2003) Dielectric and pyroelectric studies on the Ba1−3aBi2aTiO3 classical and relaxor ferroelectric ceramics. Solid State Sciences 5:9, pages 1235-1238.
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F. Bahri, A. Simon, H. Khemakhem & J. Ravez. (2001) Classical or Relaxor Ferroelectric Behaviour of Ceramics with Composition Ba1?xBi2x/3TiO3. physica status solidi (a) 184:2, pages 459-464.
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Dong Li & Munirpallam A Subramanian. (2000) Noval tunable ferroelectric compositions: Ba1−xLnxTi1−xMxO3 (Ln=La, Sm, Gd, Dy. M=Al, Fe, Cr). Solid State Sciences 2:5, pages 507-512.
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Dong Li & M. A. Subramanian. (2011) Ferroelectric Tunability Studies in Doped BaTiO 3 and Ba 1−x Sr x TiO 3 . MRS Proceedings 658.
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B Tribotté, J.M Haussonne & G Desgardin. (1999) K2Sr4Nb10O30-based dielectric ceramics having the tetragonal tungsten bronze structure and temperature-stable high permittivity. Journal of the European Ceramic Society 19:6-7, pages 1105-1109.
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