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Original Articles

Perovskite formation by B-site precursor method and dielectric characteristics of Pb[Mg1/3(Ta,Nb)2/3]O3 ceramic system

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Pages 603-613 | Received 07 Apr 1997, Published online: 26 Oct 2011

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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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Articles from other publishers (18)

Byung-Yong Ahn, Tai-Kwang Park & Nam-Kyoung Kim. (2011) Phase formation studies in ZnB″2O6 and Pb(Zn1/3B″2/3)O3 (B″=Nb,Ta). Ceramics International 37:2, pages 549-553.
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Bong-Ho Lee & Nam-Kyoung Kim. (2008) Phase developments in the Pb(Zn1/2W1/2)O3–Pb(Zn1/3Ta2/3)O3–Pb(Zn1/3Nb2/3)O3 pseudo-ternary system. Materials Letters 62:1, pages 137-139.
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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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Jin Hyeok Kim, Yeon-A Shim, Taeun Kim, Youngman Kim, Jong-Ha Moon & Byung-Teak Lee. (2005) Substrate effects on the growth of epitaxial Pb(Mg1/3,Ta2/3)O3 thin films using chemical solution deposition. Thin Solid Films 474:1-2, pages 109-113.
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Jee‐Su Kim, Dong‐Hwan Suh, Nam‐Kyoung Kim & Hwan Kim. (2011) Dielectric Properties of 0.8Pb[(Mg 1/3 Ta 2/3 ),(B‘ 1/3 B“ 2/3 )]O 3 –0.2PbTiO 3 Ceramics (B'B”= ZnTa, MgNb, and ZnNb) . Journal of the American Ceramic Society 87:7, pages 1250-1253.
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Song Fengbing, Li Qiang, Zhong Haisheng, Li Chunhong, Zhao Shixi & Shen Dezhong. (2004) Phase formation and transitions in the lead magnesium niobate–lead titanate system. Materials Chemistry and Physics 83:1, pages 135-139.
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Dae-Soo Jeong, Yeon-Ah Shim, Jong-Ha Moon, Byung-Teak Lee & Jin Hyeok Kim. (2003) Heteroepitaxial growth of Pb(Mg1/3Ta2/3)O3 thin films on SrTiO3 substrates using chemical solution deposition method: microstructural evolution. Microelectronic Engineering 66:1-4, pages 561-567.
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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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D. S. Jeong, J-H. Moon, B-T. Lee & J. H. Kim. (2011) Preparation of epitaxial Pb(Mg 1/3 Ta 2/3 )O 3 thin film by chemical solution deposition . Journal of Materials Research 17:11, pages 2884-2887.
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Min-Chul Chae & Nam-Kyoung Kim. (2002) Effect of Zn substitution on dielectric responses of 0.2PMT·0.8PMN ceramics. Journal of the European Ceramic Society 22:11, pages 1857-1861.
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Dong-Hwan Suh, Dong-Ha Lee & Nam-Kyoung Kim. (2002) Phase developments and dielectric/ferroelectric responses in the PMN–PT system. Journal of the European Ceramic Society 22:2, pages 219-223.
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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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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, Dong‐Ha Lee & Nam‐Kyoung Kim. (2004) Dielectric Properties of the Perovskite System Pb(Mg 1/3 Nb 2/3 )O 3 ‐PbTiO 3 Modified by Pb(Mg 1/3 Ta 2/3 )O 3 and Pb(Zn 1/3 Nb 2/3 )O 3 . Journal of the American Ceramic Society 84:6, pages 1281-1285.
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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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Min-Chul Chae & Nam-Kyoung Kim. (2000) Dielectric properties of a multiple octahedral-cation system Pb[(Mg1/3Ta2/3),(Zn1/3Nb2/3)]O3 modified by Pb(Mg1/3Nb2/3)O3. Materials Research Bulletin 35:11, pages 1763-1773.
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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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Dong-Ha Lee, Nam-Kyoung Kim & Jaejung Ko. (1999) Perovskite phase developments and dielectric properties of pmn-substituted pzn-pt system. Materials Research Bulletin 34:14-15, pages 2185-2191.
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