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Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics

Lead-free piezoelectric powders (K(0.44)Na(0.52)Li(0.04))(Nb(0.82)Ta(0.10)Sb(0.04))O(3) were obtained by conventional and microwave-assisted reactive heating. Firstly, the synthesis of the material was carried out following the mixed oxide route and employing both traditional methods and microwave t...

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Autores principales: Lagunas-Chavarría, Anggel, Navarro-Rojero, María Guadalupe, Salvador, María Dolores, Benavente, Rut, Catalá-Civera, Jose Manuel, Borrell, Amparo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181678/
https://www.ncbi.nlm.nih.gov/pubmed/35683078
http://dx.doi.org/10.3390/ma15113773
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author Lagunas-Chavarría, Anggel
Navarro-Rojero, María Guadalupe
Salvador, María Dolores
Benavente, Rut
Catalá-Civera, Jose Manuel
Borrell, Amparo
author_facet Lagunas-Chavarría, Anggel
Navarro-Rojero, María Guadalupe
Salvador, María Dolores
Benavente, Rut
Catalá-Civera, Jose Manuel
Borrell, Amparo
author_sort Lagunas-Chavarría, Anggel
collection PubMed
description Lead-free piezoelectric powders (K(0.44)Na(0.52)Li(0.04))(Nb(0.82)Ta(0.10)Sb(0.04))O(3) were obtained by conventional and microwave-assisted reactive heating. Firstly, the synthesis of the material was carried out following the mixed oxide route and employing both traditional methods and microwave technology. Thermogravimetry, X-ray diffraction, field emission scanning electron microscopy and electrical properties analyses were evaluated. X-ray diffraction of the powders calcined by the microwave process shows the formation of perovskite structure with orthorhombic geometry, but it is possible to observe the presence of other phases. The presence of the secondary phases found can have a great influence on the heating rate during the synthesis on which the kinetics of the reaction of formation of the piezoelectric compound depend. The calcined powder was sintered at different temperatures by conventional and non-conventional processes. The microstructure of the ceramics sintered by microwave at 1050 °C for 10 min shows perovskite cubes with regular geometry, of size close to 2–5 µm. However, the observed porosity (~8%), the presence of liquid phase and secondary phases in the microstructure of the microwave sintered materials lead to a decrease of the piezoelectric constant. The highest d(33) value of 146 pC/N was obtained for samples obtained by conventional at 1100 °C 2 h compared to samples sintered by microwave at 1050 °C 10 min (~15 pC/N).
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spelling pubmed-91816782022-06-10 Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics Lagunas-Chavarría, Anggel Navarro-Rojero, María Guadalupe Salvador, María Dolores Benavente, Rut Catalá-Civera, Jose Manuel Borrell, Amparo Materials (Basel) Article Lead-free piezoelectric powders (K(0.44)Na(0.52)Li(0.04))(Nb(0.82)Ta(0.10)Sb(0.04))O(3) were obtained by conventional and microwave-assisted reactive heating. Firstly, the synthesis of the material was carried out following the mixed oxide route and employing both traditional methods and microwave technology. Thermogravimetry, X-ray diffraction, field emission scanning electron microscopy and electrical properties analyses were evaluated. X-ray diffraction of the powders calcined by the microwave process shows the formation of perovskite structure with orthorhombic geometry, but it is possible to observe the presence of other phases. The presence of the secondary phases found can have a great influence on the heating rate during the synthesis on which the kinetics of the reaction of formation of the piezoelectric compound depend. The calcined powder was sintered at different temperatures by conventional and non-conventional processes. The microstructure of the ceramics sintered by microwave at 1050 °C for 10 min shows perovskite cubes with regular geometry, of size close to 2–5 µm. However, the observed porosity (~8%), the presence of liquid phase and secondary phases in the microstructure of the microwave sintered materials lead to a decrease of the piezoelectric constant. The highest d(33) value of 146 pC/N was obtained for samples obtained by conventional at 1100 °C 2 h compared to samples sintered by microwave at 1050 °C 10 min (~15 pC/N). MDPI 2022-05-25 /pmc/articles/PMC9181678/ /pubmed/35683078 http://dx.doi.org/10.3390/ma15113773 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lagunas-Chavarría, Anggel
Navarro-Rojero, María Guadalupe
Salvador, María Dolores
Benavente, Rut
Catalá-Civera, Jose Manuel
Borrell, Amparo
Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics
title Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics
title_full Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics
title_fullStr Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics
title_full_unstemmed Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics
title_short Effect of Microwave-Assisted Synthesis and Sintering of Lead-Free KNL-NTS Ceramics
title_sort effect of microwave-assisted synthesis and sintering of lead-free knl-nts ceramics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181678/
https://www.ncbi.nlm.nih.gov/pubmed/35683078
http://dx.doi.org/10.3390/ma15113773
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