Publication Cover
Integrated Ferroelectrics
An International Journal
Volume 3, 1993 - Issue 4
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Original Articles

Ferroelectric ceramics and thin films for pyroelectric applications

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Pages 301-308 | Received 31 May 1993, Published online: 19 Aug 2006

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Read on this site (4)

Mao-Xiang Wang, Tong Sun & Ping Sun. (2001) Research on the dielectric and ferroelctric characteristics of (Pb1−xSrx)TiO3 ceramics. Ferroelectrics 264:1, pages 117-120.
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T.G. Sweeney & R.W. Whatmore. (1996) Electrophoretic deposition of ferroelectric thin films. Ferroelectrics 187:1, pages 57-73.
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J.F. Scott. (1996) Device physics of ferroelectric memories. Ferroelectrics 183:1, pages 51-63.
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Articles from other publishers (7)

Sidney B. Lang & Dilip K. Das-Gupta. 2001. Handbook of Advanced Electronic and Photonic Materials and Devices. Handbook of Advanced Electronic and Photonic Materials and Devices 1 55 .
Chen Shi, Liu Meidong, Li Churong, Zeng Yike & Joe Da Costa. (2000) Investigation of crystallographic and pyroelectric properties of lead-based perovskite-type structure ferroelectric thin films. Thin Solid Films 375:1-2, pages 288-291.
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G. Suchaneck, R. Koehler, P. Padmini, T. Sandner, J. Frey & G. Gerlach. (1999) Self-polarization control of radio-frequency-sputtered lead zirconate titanate films. Surface and Coatings Technology 116-119, pages 1238-1243.
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G. Suchaneck, T. Sandner, R. Kohler, P. Padmini, G. Gerlach, V.P. Afanasjev & E.A. Tarakanov. (1998) The spatial distribution of polarization and space charge in sputtered PZT thin films. The spatial distribution of polarization and space charge in sputtered PZT thin films.
T. Sweeney & R.W. Whatmore. (1996) Electrophoretic deposition of PZT ceramic films. Electrophoretic deposition of PZT ceramic films.
H. Achard, H. Macé & L. Peccoud. (1995) Device processing and integration of ferroelectric thin films for memory applications. Microelectronic Engineering 29:1-4, pages 19-28.
Crossref
R. W. Whatmore, P. Kirby, A. Patel, N. M. Shorrocks, T. Bland & M. Walker. 1995. Science and Technology of Electroceramic Thin Films. Science and Technology of Electroceramic Thin Films 383 397 .

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