Processing of La sub(2)O sub(3) based rare earth non-linear resistors via combustion synthesis

Non Linear ceramic Resistor (NLR) was processed using ZnO-La sub(2)O sub(3) rare earth composition via combustion technique involving urea and glycine as organic fuels. The La sub(2)O sub(3) NLR ceramic was sintered at 1300 degree C/ 3 h that showed dense microstructures with average grain size of 1...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Journal of electroceramics 2014-06, Vol.32 (4), p.292-300
Hauptverfasser: Rahul, Sasidharan Pillai, Mahesh, K V, Sujith, S S, Jeen Maria, Mathews, Ananthakumar, S
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Non Linear ceramic Resistor (NLR) was processed using ZnO-La sub(2)O sub(3) rare earth composition via combustion technique involving urea and glycine as organic fuels. The La sub(2)O sub(3) NLR ceramic was sintered at 1300 degree C/ 3 h that showed dense microstructures with average grain size of 1 mu m. The current v/s voltage characteristics of La sub(2)O sub(3) NLR were compared among the fuels. In addition to that the combustion chemistry of urea and glycine was monitored via C-H-N-S analysis and the functional property was assessed by UV-Vis analysis. The I-V analysis confirmed that the La sub(2)O sub(3) NLR ceramic prepared with urea fuels exhibits only a linear resistor behavior whereas an excellent non-ohmic nature was obtained in glycine fuels. The grain-grain boundary property was further examined by impedance analysis. The study brought out a promising, eco-friendly rare earth composition for obtaining high-energy NLR ceramics.
ISSN:1385-3449
1573-8663
DOI:10.1007/s10832-014-9894-4