Effect of Cold Sintering Process (CSP) on the Electro-Chemo-Mechanical Properties of Gd-doped Ceria (GDC)

In this report, the effect of the cold sintering process (CSP) on the electro-chemo-mechanical properties of 10 mol% Gd-doped ceria (GDC) is investigated. High purity nanoscale GDC powder is sintered via a cold sintering process (CSP) in pure water followed by post-annealing at 1000 {\deg}C. The res...

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Veröffentlicht in:arXiv.org 2020-06
Hauptverfasser: Kabir, Ahsanul, Daoyao Ke, Grasso, Salvatore, Benoit, Merle, Esposito, Vincenzo
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Sprache:eng
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Zusammenfassung:In this report, the effect of the cold sintering process (CSP) on the electro-chemo-mechanical properties of 10 mol% Gd-doped ceria (GDC) is investigated. High purity nanoscale GDC powder is sintered via a cold sintering process (CSP) in pure water followed by post-annealing at 1000 {\deg}C. The resultant CSP ceramics exhibits high relative density (~92%) with an ultrafine grain size of ~100 nm. This sample illustrates comparable electrochemical properties at intermediate/high temperatures and electromechanical properties at room temperature to the sample prepared via conventional firing, i.e. sintering in the air at 1450 {\deg}C. Moreover, a large creep constant as well as a low elastic modulus and hardness are also observed in the CSP sample.
ISSN:2331-8422