2009
DOI: 10.1016/j.ssc.2009.02.028
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Relaxor-like dielectric behavior in La2NiMnO6 double perovskite ceramics

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Cited by 165 publications
(96 citation statements)
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“…The dielectric response was determined using a broadband dielectric spectrometer (Turnkey Concept 50, Novelcontrol Technologies, Germany) at various frequencies (2 kHz to 4 MHz) from 123 to 300 K with an excitation voltage of 0.05 V. 6 with a relatively weak temperature dependence has been observed at high temperatures for LNMO ceramic, which is in agreement with other studies [6,9]. As the temperature decreases, its dielectric permittivity shows a sharp drop around 175 K. With the increase of Sr and Sb content, the plateau of dielectric permittivity decreases and the drop-off temperatures shift to higher values (190 K for x ¼ 0.08 and 260 K for 0.30).…”
supporting
confidence: 88%
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“…The dielectric response was determined using a broadband dielectric spectrometer (Turnkey Concept 50, Novelcontrol Technologies, Germany) at various frequencies (2 kHz to 4 MHz) from 123 to 300 K with an excitation voltage of 0.05 V. 6 with a relatively weak temperature dependence has been observed at high temperatures for LNMO ceramic, which is in agreement with other studies [6,9]. As the temperature decreases, its dielectric permittivity shows a sharp drop around 175 K. With the increase of Sr and Sb content, the plateau of dielectric permittivity decreases and the drop-off temperatures shift to higher values (190 K for x ¼ 0.08 and 260 K for 0.30).…”
supporting
confidence: 88%
“…3a, the giant dielectric constant of LNMO around room temperature mainly originates from the extrinsic electrode effect caused by the Schottky barriers formed between the metallic electrode and the semiconductive LNMO ceramic [21,23]. However, a different frequency dependence of dielectric constant has been reported for LNMO ceramic by Lin et al [9]. The dielectric constants at different temperatures have nearly merged to the value of 10 5 at low frequency and 10 2 at high frequency.…”
mentioning
confidence: 99%
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“…Los valores encontrados, se detallan en la Tabla 1. Como puede verse, están en buen acuerdo con los informados anteriormente para estos óxidos [39][40][41][42].…”
Section: Caracterización Por Drxpunclassified
“…En el caso de La 2 NiMnO 6 la interacción de super intercambio entre los cationes Ni 2+ y Mn 4+ es responsable del efecto llamado magneto-capacitancia, significativo para los materiales espintrónicos [40]. Según Lin y colaboradores [42], la conductividad del óxido La 2 NiMnO 6 sigue el mecanismo de salto de rango variable, y el desorden puede originarse a partir de las vacancias catiónicas distribuidas aleatoriamente. ** A partir de la ecuación de Scherrer, con el ancho de pico (a la mitad de la altura de pico).…”
Section: El Ordenamiento De Los Iones Niunclassified