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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Processing issues and their influence in the magnetoelectric performance of (K,Na)NbO3/CoFe2O4-based layered composites

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Author(s):
Rosa, Washington Santa [1] ; Venet, Michel [1] ; M'Peko, Jean-Claude [2] ; Amorin, Harvey [3] ; Alguero, Miguel [3]
Total Authors: 5
Affiliation:
[1] Univ Fed Sao Carlos, Dept Fis, BR-13565905 Sao Carlos, SP - Brazil
[2] Univ Sao Paulo, Inst Fis Sao Carlos, BR-13560970 Sao Carlos, SP - Brazil
[3] CSIC, Inst Ciencia Mat Madrid, E-28049 Madrid - Spain
Total Affiliations: 3
Document type: Journal article
Source: Journal of Alloys and Compounds; v. 744, p. 691-700, MAY 5 2018.
Web of Science Citations: 4
Abstract

Low temperature processing of environmentally-friendly (K,Na)NbO3- and CoFe2O4-based layered composites has been accomplished by hot pressing, and their electrical, piezoelectric and magneto-electric properties have been characterized. High quality composite three-layer CoFe2O4/K0.5Na0.5NbO3/CoFe2O4 structures with defect-free interfaces were obtained by hot pressing at only 1000 degrees C, when highly reactive CoFe2O4 powders obtained by Pechini were used. Negligible chemical reactions at interfaces or interdiffusion across them took place during processing, while alkali volatilization was minimized. Dense, crack-free CoFe2-zGazO4/(K0.5Na0.5)(1-x)LixNb1-yTayO3/CoFe2-zGazO4 structures incorporating phases with enhanced piezoresponses have been also obtained, though in this case magneto-electric coefficients were lower than expected. This is shown to be related with the presence of a core-shell type microstructure within the piezoelectric layer characteristic of (K0.5Na0.5)(1-x)LixNb1-yTayO3, which is stabilized by the low temperature processing. Procedures for further enhancement of the magnetoelectric response are proposed. (C) 2018 Elsevier B.V. All rights reserved. (AU)

FAPESP's process: 13/00134-7 - Obtaining and improvement of properties of lead free magnetoelectric composites
Grantee:Michel Venet Zambrano
Support Opportunities: Regular Research Grants