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Integrated Ferroelectrics
An International Journal
Volume 22, 1998 - Issue 1-4
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Session 9. Pyroelectric and optical applications

Poling of pyroelectric thin films

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Pages 453-463 | Received 30 Mar 1998, Published online: 19 Aug 2006

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Q. Zhang & R.W. Whatmore. (2001) Sol-gel PZT and Mn-doped PZT thin films for pyroelectric applications. Integrated Ferroelectrics 41:1-4, pages 43-50.
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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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M.A. Matin, T. Sugai, N. Kawazu, D. Akai, K. Sawada & M. Ishida. (2015) Thermal Aspects of Pyroelectric Ceramic Functional Material for Infrared Image Sensing. Journal of Electronic Materials 45:1, pages 329-338.
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M. T. Kesim, J. Zhang, S. Trolier-McKinstry, J. V. Mantese, R. W. Whatmore & S. P. Alpay. (2013) Pyroelectric response of lead zirconate titanate thin films on silicon: Effect of thermal stresses. Journal of Applied Physics 114:20.
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Hiroshi Funakubo, Matthijn Dekkers, Alessia Sambri, Stefano Gariglio, Igor Shklyarevskiy & Guus Rijnders. (2012) Epitaxial PZT films for MEMS printing applications. MRS Bulletin 37:11, pages 1030-1038.
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Tie Dong Cheng, Xin Gui Tang, Shu Juan Kuang, Nan Ding, Yan Ping Jiang & Qiu Xiang Liu. (2011) Ferroelectric, Dielectric and Pyroelectric Properties of Highly C-Axis -Oriented Nanostructured (<i>Pb,Sr</i>)(<i>Zr,Ti</i>)O<sub>3</sub> Thin Films. Advanced Materials Research 287-290, pages 2381-2386.
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Xin-gui Tang, Li-li Jiang, Shu-juan Kuang, Ai-li Ding & H. L. W. Chan. (2007) Dielectric and Pyroelectric Properties of Compositionally Graded Pb(Zr 1- x Ti x )O 3 Thin Films Prepared by Sol-gel Process . Chinese Journal of Chemical Physics 20:6, pages 665-669.
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P. Muralt. 2005. Electroceramic-Based MEMS. Electroceramic-Based MEMS 81 113 .
O. Paul & P. Ruther. (2003) Testing the limits of silicon technology based MEMS materials. Testing the limits of silicon technology based MEMS materials.
Paul Muralt. (2001) Micromachined infrared detectors based on pyroelectric thin films. Reports on Progress in Physics 64:10, pages 1339-1388.
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Q Zhang & R W Whatmore. (2001) Sol-gel PZT and Mn-doped PZT thin films for pyroelectric applications. Journal of Physics D: Applied Physics 34:15, pages 2296-2301.
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R.W. Whatmore & R. Watton. 2001. Encyclopedia of Materials: Science and Technology. Encyclopedia of Materials: Science and Technology 7924 7932 .
R. W. Whatmore & R. Watton. 2001. Infrared Detectors and Emitters: Materials and Devices. Infrared Detectors and Emitters: Materials and Devices 99 147 .
C. Wesley Tipton, K. Kirchner, R. Godfrey, M. Cardenas, S. Aggarwal, H. Li & R. Ramesh. (2000) Enhanced-response pyroelectric heterostructures. Applied Physics Letters 77:15, pages 2388-2390.
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P. Muralt. (2000) PZT thin films for microsensors and actuators: Where do we stand?. IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control 47:4, pages 903-915.
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P Muralt. (2000) Ferroelectric thin films for micro-sensors and actuators: a review. Journal of Micromechanics and Microengineering 10:2, pages 136-146.
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Andreas Seifert, Laurent Sagalowicz, Paul Muralt & Nava Setter. (2011) Microstructural evolution of dense and porous pyroelectric Pb 1− x Ca x TiO 3 thin films . Journal of Materials Research 14:5, pages 2012-2022.
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