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Original Articles

Phase stability in pb(b½'3+b″5+½)o3 and pb(b½'3+b″5+½)o3 compositions

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Pages 69-80 | Received 05 Dec 1987, Published online: 08 Feb 2011

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Read on this site (6)

  Preeti, Adityanarayan Pandey, Rachna Selvamani, Chander Shekhar & S. M. Gupta. (2017) Investigation of phase and dielectric properties of lead nickel tantalate ceramics. Ferroelectrics 517:1, pages 90-96.
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Dong-Hwan Suh, Nam-Kyoung Kim & Byung-Kyo Lee. (2000) Perovskite developments and dielectric responses of PbTiO3-modified Pb[Zn1/3(Ta,Nb)2/3]O3 system. Ferroelectrics 248:1, pages 123-133.
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Bong-Ho Lee, Nam-Kyoung Kim & Byung-Ok Park. (1999) Perovskite formation and dielectric characteristics of PFW0.2.PFT0.8-x.PFNx system ceramics. Ferroelectrics 227:1, pages 87-96.
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Bong-Ho Lee, Nam-Kyoung Kim & Sang Ho Lee. (1999) Syntheses of ceramic system (0.8−x)PFW-xPFT-0.2PFN and dielectric behaviors. Ferroelectrics 234:1, pages 189-197.
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Articles from other publishers (38)

Xu Li, Zhi Tan, Jie Xing, Fei Wang, Lixu Xie, Wen Zhang, Ning Chen, Hao Chen & Jianguo Zhu. (2022) Simultaneous Enhancement of Energy Storage and Hardness Performances in (Na 0.5 Bi 0.5 ) 0.7 Sr 0.3 TiO 3 -Based Relaxor Ferroelectrics Via Multiscale Regulation . ACS Applied Materials & Interfaces 14:37, pages 42245-42257.
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Preeti, Adityanarayan Pandey, Rachna Selvamani, S. M. Gupta & Chander Shekhar. (2022) Synthesis, structural and dielectric studies of magnetoelectric lead nickel niobate ceramics. Journal of the Australian Ceramic Society 58:3, pages 963-972.
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Yangxi Yan, Zhihong Liu, Zhimin Li, Maolin Zhang, Dongyan Zhang & Yujun Feng. (2018) Improving piezoelectric properties of Pb(Ni, Nb)O3-Pb(Hf, Ti)O3 ceramics by LiF addition. Ceramics International 44:5, pages 5790-5793.
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Venkata Sreenivas Puli, R. MartínezVV, Ashok Kumar, J.F. Scott & Ram S. Katiyar. (2011) A quaternary lead based perovskite structured materials with diffuse phase transition behavior. Materials Research Bulletin 46:12, pages 2527-2530.
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Tai-Kwang Park, Jee-Su Kim & Nam-Kyoung Kim. (2008) Crystallographic and dielectric properties of barium-substituted Pb(Mg1/3Ta2/3)O3 ceramics. Materials Research Bulletin 43:3, pages 730-734.
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Jee-Su Kim, Dong-Hwan Suh & Nam-Kyoung Kim. (2007) Dielectric properties of Zn- and/or Nb-substituted Pb[(Mg1/3Ta2/3),Ti]O3 ceramics. Journal of Electroceramics 18:1-2, pages 25-31.
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Kyung-Han Seo & Nam-Kyoung Kim. (2006) Dielectric properties of Pb(Zn1/3Ta2/3)O3-introduced (Ba,Pb)TiO3 ceramic system. Journal of Materials Science 42:1, pages 298-301.
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Jee-Su Kim & Nam-Kyoung Kim. (2006) Perovskite stabilization and dielectric properties of Mg1/3Nb2/3-substituted Pb[(Zn1/3Ta2/3),Ti]O3. Ceramics International 32:5, pages 539-543.
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Kyung-Han Seo, Bong-Ho Lee, Nam-Kyoung Kim & Jaejung Ko. (2005) Dielectric characteristics of Pb(Zn1/3Ta2/3)O3-BaTiO3 ceramics with/without PbTiO3 modification. Journal of Materials Science 40:23, pages 6151-6156.
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Jung-A Lee & Nam-Kyoung Kim. (2005) Development of perovskite in Fe-substituted Pb(Zn1/3Ta2/3)O3 and dielectric characteristics. Materials Research Bulletin 40:10, pages 1839-1846.
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Jung-A Lee & Nam-Kyoung Kim. (2005) Perovskite formation and dielectric properties of Pb[(Zn1/3Ta2/3),(Fe1/2Nb1/2)]O3. Materials Letters 59:1, pages 32-35.
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Zhenrong Li & P.M. Vilarinho. (2005) Phase development and dielectric properties of (1−x)Pb(Ni1/3Ta2/3)O3−xPbTiO3 ceramics. Journal of the European Ceramic Society 25:12, pages 2527-2530.
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Jee-Su Kim & Nam-Kyoung Kim. (2004) Dielectric properties of Pb(Zn1∕3Ta2∕3)O3-modified Pb(Mg1∕3Nb2∕3)O3-PbTiO3 perovskite ceramics. Journal of Applied Physics 96:12, pages 7450-7454.
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Jee-Su Kim, Nam-Kyoung Kim & Jin-Ho Kim. (2004) Preparation and dielectric properties of Pb[(Zn1/3Ta2/3)0.8−x(Mg1/3Nb2/3)xTi0.2]O3 ceramics. Materials Letters 58:7-8, pages 1358-1362.
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Jee-Su Kim & Nam-Kyoung Kim. (2003) Mg substitutions for Zn in 0.8Pb[Zn1/3(Ta,Nb)2/3]O3–0.2PbTiO3 ceramics and dielectric properties. Materials Letters 57:29, pages 4525-4530.
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Jee‐Su Kim, Nam‐Kyoung Kim & Hwan Kim. (2004) Perovskite Formation and Dielectric Characteristics of Pb(Zn 1/3 Ta 2/3 )O 3 with PbTiO 3 Substitution . Journal of the American Ceramic Society 86:6, pages 929-933.
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Seung-Mo Lim, Min-Chul Chae, Nam-Kyoung Kim & Byung-Ok Park. (2003) Dielectric properties of ceramics (z=0.4,0.6). Ceramics International 29:7, pages 815-819.
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Albina Y. Borisevich & Peter K. Davies. (2005) Synthesis and Dielectric Properties of Li 1− x + y Ta 1− x −3 y Ti x +4 y O 3 M ‐Phase Solid Solutions . Journal of the American Ceramic Society 85:10, pages 2487-2491.
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Min-Chul Chae, Seung-Mo Lim & Nam-Kyoung Kim. (2002) Phase development and dielectric characteristics of the Pb(Mg1/3Ta2/3)O3-modified Pb[(Zn1/3Ta2/3),(Mg1/3Nb2/3)]O3 system. Ceramics International 28:4, pages 419-423.
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Seung-Mo Lim & Nam-Kyoung Kim. (2002) Crystallographic and dielectric aspects of Pb[(Mg,Zn)1/3Ta2/3]O3 system with 40 at.% Nb substitution. Materials Research Bulletin 37:1, pages 59-67.
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Min-Chul Chae, Seung-Mo Lim, Nam-Kyoung Kim & Byung-Ok Park. (2001) Perovskite formation and dielectric properties of Pb[(Mg1/3Ta2/3)0.8(Zn1/3Ta2/3)0.2]O3 ceramics with Nb substitution for Ta. Materials Research Bulletin 36:13-14, pages 2443-2451.
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Dong-Hwan Suh, Nam-Kyoung Kim & Jin-Ho Kim. (2001) Crystallographic and dielectric studies on Pb(Zn1/3Ta2/3)O3-substituted Pb[(Zn1/3Nb2/3),Ti]O3 system. Materials Letters 50:1, pages 6-11.
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Seung-Mo Lim, Min-Chul Chae & Nam-Kyoung Kim. (2001) Phase developments in Pb[(Mg,Zn)1/3(Ta0.8Nb0.2)2/3]O3 and dielectric properties. Materials Letters 49:2, pages 86-90.
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W.Z Zhu, A Kholkin, P.Q Mantas & J.L Baptista. (2000) Preparation and characterisation of Pb(Fe1/2Ta1/2)O3 relaxor ferroelectric. Journal of the European Ceramic Society 20:12, pages 2029-2034.
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Jee-Su Kim & Nam-Kyoung Kim. (2000) Lead magnesium tantalate–lead titanate perovskite ceramic system: preparation and characterization. Materials Research Bulletin 35:14-15, pages 2479-2489.
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Byung‐Yong Ahn & Nam‐Kyoung Kim. (2004) Effects of Barium Substitution on Perovskite Formation, Dielectric Properties, and Diffuseness Characteristics of Lead Zinc Niobate Ceramics. Journal of the American Ceramic Society 83:7, pages 1720-1726.
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Byung-Yong Ahn & Nam-Kyoung Kim. (2000) Perovskite phase developments and dielectric characteristics in barium-substituted lead zinc tantalate system. Materials Research Bulletin 35:10, pages 1677-1687.
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Sun-Gon Jun & Nam-Kyoung Kim. (1999) Phase development and dielectric properties of the Pb(Fe1/2Nb1/2)O3-substituted Pb(Fe2/3W1/3)O3–Pb(Mg1/3Nb2/3)O3 system. Materials Research Bulletin 34:4, pages 613-620.
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A. Mergen & W.E. Lee. (1997) Fabrication, characterisation and formation mechanism of Pb1.83Mg0.29Nb1.71O6.39 pyrochlore. Journal of the European Ceramic Society 17:8, pages 1033-1047.
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B. Balzer & H. Langbein. (1997) Formation of the Perovskite Phase Pb3NiNb2O9. Crystal Research and Technology 32:7, pages 955-962.
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B. Balzer & H. Langbein. (1996) Formation of pyrochlore phases in the PbONb2O5(Fe2O3) system. Journal of Alloys and Compounds 244:1-2, pages 1-6.
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M.F. Yan & H.C. Ling. (1996) Low sintering temperature, high dielectric constant and small temperature coefficient dielectric compositions. Materials Chemistry and Physics 44:1, pages 37-44.
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Y. Yamashita & N. Ichinose. (1996) Can relaxor piezoelectric materials outperform PZT?. Can relaxor piezoelectric materials outperform PZT?.
Xin-Bong Wang, Xiao-Wen Zhang & Binglin Gu. (1996) Studies of M�ssbauer spectrum on Pb(Fe1/2Ta1/2)O3 ferroelectric ceramics. Journal of Materials Science Letters 15:10, pages 864-866.
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Wang Xinrong, Gui Zhilun, Li Longtu & Zhang Xiaowen. (1994) Mössbauer study on valency state of iron ions in ceramics. Materials Letters 20:1-2, pages 75-78.
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D S McLachlan & Jie Chen. (1992) A quantitative analysis of the complex dielectric constants of binary mixtures of lead magnesium niobate-pyrochlore. Journal of Physics: Condensed Matter 4:18, pages 4557-4564.
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H. C. Ling, A. M. Jackson, M. F. Yan & W. W. Rhodes. (2011) Effect of PbO evaporation on the composition and dielectric properties of PbO-MgO-Nb 2 O 5 based dielectrics . Journal of Materials Research 5:3, pages 629-639.
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Hung C. Ling, Man F. Yan & Warren W. Rhodes. (2005) Monolithic Device with Dual Capacitor and Varistor Functions. Journal of the American Ceramic Society 72:7, pages 1274-1276.
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