4.7 Article

TPR studies on NiO-CGO composites prepared by combustion synthesis

Journal

CERAMICS INTERNATIONAL
Volume 40, Issue 2, Pages 3469-3475

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2013.09.083

Keywords

Ceria; Nickel oxide; Anode; TPR; SOFC

Funding

  1. European Union [245355]
  2. MICINN
  3. FEDER funds
  4. FPI
  5. [MAT2007-60127]
  6. [MAT2010-16007]

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NiO-ceria composites, which are promising candidates as anodes for intermediate temperature solid oxide fuel cells (IT-SOFCs) were prepared by urea combustion synthesis (UCS) method. The UCS method is, in general, a highly suitable synthesis method for the production, at low temperatures, of fine and reactive powders. By means of XRD and SEM-EDX techniques, the structural, microstructural and compositional behavior of the as-prepared powders has been studied. In addition, temperature programmed reduction (TPR) tests were performed to investigate the reducibility of the composites. After reduction of the NiO-CGO as-prepared compositions, the combustion powders exhibit the presence of Ni, the fluorite CGO solid solution that remains stable and NiO is no longer present. The morphology and size of the nanoparticles and aggregates of the as-prepared powders make them reactive at intermediate temperatures (400-800 degrees C). TPR tests show wide overlapping peaks which are associated with the two primary reduction stages; one is related to the surface NiO reduction mechanism and the other to the coexistence of interactions between the NiO CGO surface and bulk reduction processes. Further, after TPR measurements the resulting products have high phase stability and reproducibility. (C) 2013 Elsevier Ltd and Techna Group S.r.l. All rights reserved.

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