CROSS-DISCIPLINARY PHYSICS AND RELATED AREAS OF SCIENCE AND TECHNOLOGY |
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Phase Structure and Electrical Conduction of CaTi1?xScxO3?δ Ceramics |
ZHANG Qi-Long1**, LIU Yang2, YANG Hui1** |
1Department of Materials Science and Engineering, Zhejiang University, Hangzhou 310027 2Department of Materials Science and Engineering, University of Sheffield, Mappin Street, Sheffield, S1 3JD, UK
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Cite this article: |
ZHANG Qi-Long, LIU Yang, YANG Hui 2013 Chin. Phys. Lett. 30 018102 |
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Abstract The electrical conduction of CaTi1?xScxO3?δ ceramics is investigated by ac impedance spectra. A complete solid solution is formed, in which Sc (x≤0.17) substitutes for a Ti-site with the creation of oxygen vacancies. The samples of x≤0.1 contain two main resistances, the bulk resistance R1 and the grain boundary resistance R2. However, only R1 and a low-frequency 'spike' representing charge build-up at the blocking metal electrodes are obtained for x≥0.15. CaTiO3 ceramics doped with Sc exhibits a relativly high electrical conductivity. With increasing x, both σ1 and σ2 of CaTi1?xScxO3?δ increase first, reach a maximum value at x=0.05, and then decrease to x≥0.1.
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Received: 16 October 2012
Published: 04 March 2013
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PACS: |
81.05.-t
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(Specific materials: fabrication, treatment, testing, and analysis)
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77.84.-s
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(Dielectric, piezoelectric, ferroelectric, and antiferroelectric materials)
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[1] Hu P, Jiao H, Wang C H, Wang X M, Ye S, Jing X P, Zhao F and Yue Z X 2011 Mater. Sci. Eng. B 176 401 [2] Feteira A, Iddles D, Price T, Muir D and Reaney I M 2011 J. Am. Ceram. Soc. 94 817 [3] Li Y, Qin S and Seifert F 2007 J. Solid State Chem. 180 824 [4] Shimura K and Yoshida H 2010 Energ. Environ. Sci. 3 615 [5] Wang H L, Cheng J H, Zhai J F and Cheng J G 2007 Solid State Commun. 142 710 [6] Murashkina A A, Demina A N, Filonova E A, Demin A K and Korobitsin I S 2008 Inorg. Mater. 44 296 [7] Dunyushkina L A, Demin A K and Zhuravlev B V 1999 Solid State Ionics 116 85 [8] Zhang Q L, Masó N, Liu Y, Yang H and West A R 2011 J. Mater. Chem. 21 12894 [9] Bashir J and Shaheen R 2011 Solid State Sci. 13 993 [10] Zhang R Z, Hua X Y, Guo P and Wang C L 2012 Physica B 407 1114 [11] Kumar P, Singh B P, Sinha T P and Singh N K 2011 Solid State Sci. 13 2060 [12] Li B X, Chen J S, Zhao Y B and Ma D G 2011 Chin. Phys. Lett. 28 057201 [13] Wang G Q, Huang C C, Xing W and Zhuo S P 2011 Chin. Phys. Lett. 28 038801 [14] Yun S W and Koh J H 2012 J. Phys. Chem. Solids 73 568 [15] Li M and Sinclair D C 2012 J. Appl. Phys. 111 054106 [16] Han P, Jin K J, Lü H B, Jia J F, Qiu J, Hu C L and Yang G Z 2009 Chin. Phys. Lett. 26 027301 [17] Yuan C L, Liu X Y, Zhou C R, Xu J W and Yang Y 2011 Chin. Phys. B 20 048701 [18] Wang X J, Gong Z Q, Qian Y F, Zhou J and Chen X B 2007 Chin. Phys. 16 2131 [19] Redfern S A T 1996 J. Phys.: Condens. Matter 8 8267 |
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