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dc.contributor.authorHernández Cuevas, Gamaliel
dc.date.accessioned2019-12-17T17:49:17Z
dc.date.available2019-12-17T17:49:17Z
dc.date.issued2019-06-13
dc.identifier.urihttp://cathi.uacj.mx/20.500.11961/9487
dc.description.abstractIn the search of lead-free piezoelectric materials, ceramic processing techniques offer potential tools to increase the piezoelectric and ferroelectric properties in addition to new chemical compositions. Powders of pure BNKT16 (Bi0.5(Na0.84K0.16)0.5TiO3) phase were synthesized by sol-gel method with a low crystallization temperature (750 °C). Ceramic samples were sintered by pressureless sintering (PLS), sinter-forging (SF), and spark plasma sintering (SPS) techniques. Structural, morphological, and chemical characterizations were performed by XRD, Raman, EDS, and SEM. Sintered samples by PLS and SF exhibit rod-like grains associated to bismuth volatility. The highest remanent polarization (11.05 μC/cm2), coercive field (26.2 kV/mm), and piezoelectric coefficient (165 pC/N) were obtained for SF sample. The piezoresponse force microscopy (PFM) analysis shows that the crystallites at the nanoscale exhibit piezoelectric phenomenon and the highest piezoelectric response is reported for PLS sample. The presence of the rhombohedral phase, the increase in grain and crystallite size, and the oriented rod-like inclusions favoring the crystallographic texture are facts that enhance the piezoelectric coefficient for BNKT16 piezoceramics.es_MX
dc.description.urihttps://link.springer.com/article/10.1007/s40145-019-0314-8#citeases_MX
dc.language.isoenes_MX
dc.relation.ispartofProducto de investigación IITes_MX
dc.relation.ispartofInstituto de Ingeniería y Tecnologíaes_MX
dc.subjectlead-free piezoelectricses_MX
dc.subjectsol-geles_MX
dc.subjectpressureless sintering (PLS)es_MX
dc.subjectsinter-forging (SF)es_MX
dc.subjectspark plasma sintering (SPS)es_MX
dc.subjectpiezoresponsees_MX
dc.subject.otherinfo:eu-repo/classification/cti/7es_MX
dc.titleEffect of the sintering technique on the ferroelectric and d33 piezoelectric coefficients of Bi0.5(Na0.84K0.16)0.5TiO3 ceramices_MX
dc.typeArtículoes_MX
dcterms.thumbnailhttp://ri.uacj.mx/vufind/thumbnails/rupiiit.pnges_MX
dcrupi.institutoInstituto de Ingeniería y Tecnologíaes_MX
dcrupi.cosechableSies_MX
dcrupi.norevista2es_MX
dcrupi.volumen8es_MX
dcrupi.nopagina278-288es_MX
dc.identifier.doihttps://doi.org/10.1007/s40145-019-0314-8es_MX
dc.contributor.coauthorLeyva Mendoza, Roberto
dc.contributor.coauthorGarcia Casillas, Perla Elvia
dc.contributor.coauthorRodriguez Gonzalez, Claudia Alejandra
dc.contributor.coauthorHernandez Paz, Juan Francisco
dc.contributor.coauthorHerrera Perez, Guillermo Manuel
dc.contributor.coauthorFuentes-Cobas, Luis E.
dc.contributor.coauthorDiaz de la Torre, Sebastian
dc.contributor.coauthorRaymond Herrera, Oscar
dc.contributor.coauthorCamacho Montes, Hector
dc.journal.titleJournal of Advanced Ceramicses_MX
dc.lgacCIENCIA Y TECNOLOGÍA DE MATERIALES AVANZADOSes_MX
dc.cuerpoacademicoCiencia e Ingeniería de Materialeses_MX


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