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Original Articles

Ferroelectric materials for thermal IR detectors

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Pages 351-367 | Published online: 15 Mar 2011

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H.L. Zhang, X.F. Chen, G. Yu, F. Cao, C.L. Mao, G.S. Wang, X.L. Dong & Y.L. Wang. (2010) Investigation on the Phase Transition Behaviors in Pb0.97La0.02(Zr0.42Sn0.40Ti0.18)O3 Ceramics. Ferroelectrics 402:1, pages 150-155.
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M.W. COLE, P.C. JOSHI, C.W. HUBBARD & E. NGO. (2006) MATERIAL PROPERTIES OF MOSD DERIVED Ba1 -xSrxTiO3-BASED THIN FILMS FOR PYROELECTRIC SENSOR APPLICATIONS. Integrated Ferroelectrics 83:1, pages 99-111.
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Jian-Gong Cheng, Jun Tang, Shao-Ling Guo & Jun-Hao Chu. (2001) Sol-gel derived pyroelectric barium strontium titanate thin films for infrared detector applications. Ferroelectrics 252:1, pages 313-320.
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RogerW. Whatmore & Rex Watton. (2000) Pyroelectric ceramics and thin films for uncooled thermal imaging. Ferroelectrics 236:1, pages 259-279.
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Krishna K. Deb. (1997) A hot-pressed PLZT under DC bias for field-stabilized pyroelectric detector applications. Materials Research Innovations 1:2, pages 85-91.
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Yu.M. Poplavko, L.P. Pereverzeva & Yu.V. Prokopenko. (1994) Thermomechanically induced pyroelectricity and its possible applications. Ferroelectrics 153:1, pages 353-358.
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N. Neumann. (1993) Modified triglycine sulphate for pyroelectric infrared detectors. Ferroelectrics 142:1, pages 83-92.
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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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N. Kim, W. Huebner, S.-J. Jang & T.R. Shrout. (1989) Dielectric and piezoelectric properties of lanthanum-modified lead magnesium niobium-lead titanate ceramics. Ferroelectrics 93:1, pages 341-349.
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R. Watton. (1989) Ferroelectric materials and devices in infrared detection and imaging. Ferroelectrics 91:1, pages 87-108.
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