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Nanostructured pure and doped ceria catalysts for gas sensor applications

Identyfikatory
Warianty tytułu
PL
Nanostrukturalne i domieszkowane katalizatory z tlenku ceru do jako sensory gazów
Konferencja
Advanced Materials and Technologies, AMT'2004 : XVII Physical Metallurgy and Materials Science Conference (XVII; 20-24.06.2004; Łódź, Polska)
Języki publikacji
EN
Abstrakty
EN
For many years, CeO2 -based materials have been used as three-ways catalysts (TWC). They are also of great interest as solid electrolytes. It was already shown that nano-structured powders of cerium dioxide are more sensitive than micronic powders, for the detection of carbon monoxide CO or methane CH4 in air. By doping the cerium dioxide with various elements (Cu, V, Mn, ...), we try to improve the selectivity of the detection. The nanopowders of pure and doped cerium oxide were elaborated from "Sol-Gel" process. The structural characterization of these powders was carried out by X-ray diffraction and transmission electron microscopy. The atom fraction of doping element and the homogeneity of the powders were investigated by Energy Dispersive Spectrometry (EDS) microanalysis techniques. Finally, the catalytic activity was determined from (BET) adsorption techniques, spectrometry IR and electrical measurements involing a homemade device.
Słowa kluczowe
Rocznik
Strony
231--233
Opis fizyczny
Bibliogr. 23 poz., tab., rys.
Twórcy
autor
  • Laboratoire L2MP, Universite de Toulon et du Var, La Garde, France
autor
  • Laboratoire L2MP, Universite de Toulon et du Var, La Garde, France
autor
  • Laboratoire L2MP, Universite de Toulon et du Var, La Garde, France
autor
  • Laboratoire L2MP, Universite de Toulon et du Var, La Garde, France
autor
  • Cesigma, Forum Aurelia, Brignoles, France
  • Laboratoire L2MP, Universite de Toulon et du Var, La Garde, France
Bibliografia
  • [1] Kaspar J., Fornasiero P., Graziani M., Catalysis Today, 50 (1999) 285-298.
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  • [4] Tschope A., Ying J.Y., Hadjipanayis G.C. and Siegeles R.W., Eds., 781, Kluwer Academic, Dordrecht/Norwell, MA, 1994.
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  • [6] Yao H.C., Yu Yao H. F., Journal of catalysis 86, (1984), 254-265.
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  • [10] Sabia R., Stevens H.J., Yarner J.R., Journal of non-crystalline Solids, 249, (1999), 123-130.
  • [l 1] Agrafiotis C., Tsetsekou A., Stournaras C.J., Julbe A., Dalmazio L., Guizard Ch., Boretto G., Debenedetti M., Parussa F., Applied catalysis B : Environnemental, 34, (2001), 149-159.
  • [12] Ozer N., Solar Energy Materials and Solar Cells, 68 (2001) 391-400.
  • [13] Villain S., Leroux Ch., Musso J., Gavarri J.R., Kopia A., Klimczak M., Kusinski J., Journal of metastable and nanocrystalline, 12, (2002), 59-69.
  • [14] Li F., Yu X., Pan H., Wang M., Xin X., Solid State Sciences, 2, (2000), 767-772.
  • [15] Brittain H.G., Sachs C.J., Lynch J.F., Ogle K.M., Peny D.L., Inorganics Chimica Acta, 127 (1987) 229-236.
  • [16] Arij T., Taguchi T., Kishi A., Ogawa M., Sawada Y., Journal of the European Ceramic Society, 22, (2002), 2283-2289.
  • [17] Masui T., Fujiwara K., Machida K.I., Adachi G.Y., Sakata T., Mori H., Chem. Mater., 9, (1997), 2197.
  • [18] Tsoga A., Naoumidis A., Jungen W., StóverD., Journal of the European Ceramic society, 19, (1999), 907-912.
  • [19] Li J.G., Ikegami T., Wang Y., Mori T., Journal of solid State Chemistry, 168, (2002), 52-59.
  • [20] Chengyun W., Weiya Z., Yitai Q., Materials Science and Engineering, B94, (2002), 170-175.
  • [21] Djuricić B., Pickering S., Journal of the European ceramic Society, 19, (1999), 1925-1934.
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  • [23] Li J.L., Ikegami T., Wang Y., Mori T., Journal of Solid State Chemistry, 168, (2002), 52-59.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0032-0041
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