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Title: Optical, ferroelectric, and piezoresponse force microscopy studies of pulsed laser deposited Aurivillius Bi5FeTi3O15 thin films

Journal Article · · Journal of Applied Physics
DOI:https://doi.org/10.1063/1.4897556· OSTI ID:1223048
 [1];  [2];  [2];  [2]
  1. Department of Physics and Institute for Functional Nanomaterials, University of Puerto Rico, P.O. Box 70377, San Juan, Puerto Rico 00936-8377, USA, Department of Physics, Sree Kerala Varma College, Thrissur-680011, Kerala, India
  2. Department of Physics and Institute for Functional Nanomaterials, University of Puerto Rico, P.O. Box 70377, San Juan, Puerto Rico 00936-8377, USA

Sponsoring Organization:
USDOE
Grant/Contract Number:
FG02-08ER46526
OSTI ID:
1223048
Journal Information:
Journal of Applied Physics, Journal Name: Journal of Applied Physics Vol. 116 Journal Issue: 14; ISSN 0021-8979
Publisher:
American Institute of PhysicsCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 15 works
Citation information provided by
Web of Science

References (28)

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Structural and electrical characterization of chemical-solution-derived Bi 5 FeTi 3 O 15 thin films journal July 2008
The structural and piezoresponse properties of c -axis-oriented Aurivillius phase Bi 5 Ti 3 FeO 15 thin films deposited by atomic vapor deposition journal September 2012
X-ray room temperature structure from single crystal data, powder diffraction measurements and optical studies of the aurivillius phase Bi 5 (Ti 3 Fe)O 15 journal May 1992
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Optical Properties of BiFeO 3 -System Multiferroic Thin Films journal September 2009
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Ferroelectric phase transitions in SrBi 2 Nb 2 O 9 and Bi 5 Ti 3 FeO 15 :   A powder neutron diffraction study journal March 2003
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Microstructure and electrical properties in W/Nb co-doped Aurivillius phase Bi 4 Ti 3 O 12 piezoelectric ceramics journal November 2014
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Fatigue-free ferroelectric capacitors with platinum electrodes journal April 1995
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Structures and electrical properties of Bi5FeTi3O15 thin films journal May 2005
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Room temperature ferroelectric and magnetic investigations and detailed phase analysis of Aurivillius phase Bi 5 Ti 3 Fe 0.7 Co 0.3 O 15 thin films journal September 2012