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Original Articles

Electrical conductivity in uranium doped, modified lead zirconate pyroelectric ceramics

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Pages 543-546 | Published online: 07 Feb 2011

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Read on this site (6)

Haitao Huang & Peter Hing. (1999) Effect of SiO2 additive on the mechanical and dielectric properties of pzfntu ceramics. Ferroelectrics 229:1, pages 291-296.
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R.W. Whatmore. (1991) Pyroelectric ceramics and devices for thermal infra-red detection and imaging. Ferroelectrics 118:1, pages 241-259.
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R.W. Whatmore, A. Patel, N.M. Shorrocks & F.W. Ainger. (1990) Ferroelectric materials for thermal ir sensors state-of-the-art and perspectives. Ferroelectrics 104:1, pages 269-283.
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M.T. Goosey, I.M. Watson, A. Patel, R.W. Whatmore & F.W. Ainger. (1989) Preparation of electroceramics from metal organic precursors. Ferroelectrics 94:1, pages 255-259.
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J.D. Jain. (1985) Ferro-Electric Materials: Trends & Applications. IETE Technical Review 2:7, pages 238-247.
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Articles from other publishers (12)

Roger Whatmore. 2014. Characterisation of Ferroelectric Bulk Materials and Thin Films. Characterisation of Ferroelectric Bulk Materials and Thin Films 65 86 .
Dilsom A. Sanchez, Nora Ortega, Ashok Kumar, G. Sreenivasulu, Ram S. Katiyar, J. F. Scott, Donald M. Evans, Miryam Arredondo-Arechavala, A. Schilling & J. M. Gregg. (2013) Room-temperature single phase multiferroic magnetoelectrics: Pb(Fe, M)x(Zr,Ti)(1−x)O3 [M = Ta, Nb]. Journal of Applied Physics 113:7.
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Roger W. Whatmore. (2004) Pyroelectric Arrays: Ceramics and Thin Films. Journal of Electroceramics 13:1-3, pages 139-147.
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R.W. Whatmore, O. Molter & C.P. Shaw. (2003) Electrical properties of Sb and Cr-doped PbZrO3–PbTiO3–PbMg1/3Nb2/3O3 ceramics. Journal of the European Ceramic Society 23:5, pages 721-728.
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C.P. Shaw, S. Gupta, S.B. Stringfellow, A. Navarro, J.R. Alcock & R.W. Whatmore. (2002) Pyroelectric properties of Mn-doped lead zirconate–lead titanate–lead magnesium niobate ceramics. Journal of the European Ceramic Society 22:13, pages 2123-2132.
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S.B. Stringfellow, S. Gupta, C. Shaw, J.R. Alcock & R.W. Whatmore. (2002) Electrical conductivity control in uranium-doped PbZrO3–PbTiO3–Pb(Mg1/3Nb2/3)O3 pyroelectric ceramics. Journal of the European Ceramic Society 22:4, pages 573-578.
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Haitao Huang & Peter Hing. (1999) The relationship between the mechanical properties and microstructures of sintered PZT. Journal of Materials Processing Technology 89-90, pages 538-543.
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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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R.B. Liu, S.W. Lin, C.F. Qu, C.H. Yao & Y.H. Jin. (1994) Pyroelectric ceramics with low resistivity. Pyroelectric ceramics with low resistivity.
W. Wersing. 1993. Ferroelectric Ceramics. Ferroelectric Ceramics 299 347 .
Ahmed Amin. (1986) Computer-controlled system for measuring bulk resistivity of insulating solids as a function of temperature. Review of Scientific Instruments 57:7, pages 1442-1444.
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