306
J. H. kenneDy (1977) The β-Aluminas. In: S. Geller (ed) Solid Electrolytes,
Topics in Applied Physics Vol. 21, Springer-Verlag, Berlin, Heidelberg, New
York, p. 105–142.
D. l. kirk and p. l. pratt (1967) Ionic Conductivity in Pure and ManganeseDoped Crystals of Sodium Chloride, Proc. Br. Ceram. Soc. 9:215–232.
J.-M. klein, M. Hénault, P. Gélin ,Y. Bultel and S. GeorGeS (2008) A Solid
Oxide Fuel Cell Operating in Gradual Internal Reforming Conditions under
Pure Dry Methane, Electrochem. Solid St. Letters 11(8):B144–B147.
J.-M. klein, M. Hénault, C. roux, Y. Bultel and S. GeorGeS (2009) Direct
Methane Solid Oxide Fuel Cell Working by Gradual Internal Steam Reforming:
Analysis of Operation, J. Power Sources 193(1):331–337.
J. A. laBrinCHa, J. R. FraDe and F. M. B. marqueS (1993) Defect Structure
of SrZrO 3 , Solid State Ionics 61(1–3):71–75.
V. levitSkii, A. Hammou, M. DuClot and C. DéporteS (1976) Influence de
l’oxygène sur la conductivité électrique du fluorure de calcium monocristallin,
J. Chim. Phys. 73(3):305–314.
S. lüBke and H.-D. WiemHöFer (1999) Electronic Conductivity of Gd-Doped
Ceria with Additional Pr-Doping, Solid State Ionics 117(3–4): 229–243.
N. L. peterSon and C. L. Wiley (1984) Diffusion and Point Defects in Cu 2 O,
J. Phys. Chem. Solids 45(3):281-294.
M. C. pope and N. BirkS (1977) The Electrical Conductivity of NiO at 1 000 °C,
Corrosion Sci. 17(9):747-752.
A. rinGueDé and J. GuinDet (1997) Ideal Behavior of a Thin Layer of
La 0.7 Sr 0.3 CoO 3−x , Ionics 3(3–4):256-260.
J. SCHenin-kinG (1994) Processus impliqués dans la chloruration d’oxydes
métalliques en milieux chlorures fondus, PhD thesis, Université Pierre-etMarie-Curie, Paris, France.
t. takaHaSHi (1972) Solid Electrolyte Fuel Cells (Theoritics and Experiments).
In: J. Hladik (ed) Physics of electrolytes, Vol. 2, Academic Press, London,
p. 989–1049.
G. tammann, W. HeSSe and Z. anorG. (1926) Die Abhängigkeit der
Viscosität von der Temperatur bie unterkühlten Flüssigkeiten, Z. Anorg. Allg.
Chem. 156(1):245–257.
A. touati and a. Hammou (2006) Determination of the Exchange Current in
the SOFC Composite Cathode, Ionics 12(6):339–341.
Solid-State Electrochemistry
J. H. kenneDy (1977) The β-Aluminas. In: S. Geller (ed) Solid Electrolytes,
Topics in Applied Physics Vol. 21, Springer-Verlag, Berlin, Heidelberg, New
York, p. 105–142.
D. l. kirk and p. l. pratt (1967) Ionic Conductivity in Pure and ManganeseDoped Crystals of Sodium Chloride, Proc. Br. Ceram. Soc. 9:215–232.
J.-M. klein, M. Hénault, P. Gélin ,Y. Bultel and S. GeorGeS (2008) A Solid
Oxide Fuel Cell Operating in Gradual Internal Reforming Conditions under
Pure Dry Methane, Electrochem. Solid St. Letters 11(8):B144–B147.
J.-M. klein, M. Hénault, C. roux, Y. Bultel and S. GeorGeS (2009) Direct
Methane Solid Oxide Fuel Cell Working by Gradual Internal Steam Reforming:
Analysis of Operation, J. Power Sources 193(1):331–337.
J. A. laBrinCHa, J. R. FraDe and F. M. B. marqueS (1993) Defect Structure
of SrZrO 3 , Solid State Ionics 61(1–3):71–75.
V. levitSkii, A. Hammou, M. DuClot and C. DéporteS (1976) Influence de
l’oxygène sur la conductivité électrique du fluorure de calcium monocristallin,
J. Chim. Phys. 73(3):305–314.
S. lüBke and H.-D. WiemHöFer (1999) Electronic Conductivity of Gd-Doped
Ceria with Additional Pr-Doping, Solid State Ionics 117(3–4): 229–243.
N. L. peterSon and C. L. Wiley (1984) Diffusion and Point Defects in Cu 2 O,
J. Phys. Chem. Solids 45(3):281-294.
M. C. pope and N. BirkS (1977) The Electrical Conductivity of NiO at 1 000 °C,
Corrosion Sci. 17(9):747-752.
A. rinGueDé and J. GuinDet (1997) Ideal Behavior of a Thin Layer of
La 0.7 Sr 0.3 CoO 3−x , Ionics 3(3–4):256-260.
J. SCHenin-kinG (1994) Processus impliqués dans la chloruration d’oxydes
métalliques en milieux chlorures fondus, PhD thesis, Université Pierre-etMarie-Curie, Paris, France.
t. takaHaSHi (1972) Solid Electrolyte Fuel Cells (Theoritics and Experiments).
In: J. Hladik (ed) Physics of electrolytes, Vol. 2, Academic Press, London,
p. 989–1049.
G. tammann, W. HeSSe and Z. anorG. (1926) Die Abhängigkeit der
Viscosität von der Temperatur bie unterkühlten Flüssigkeiten, Z. Anorg. Allg.
Chem. 156(1):245–257.
A. touati and a. Hammou (2006) Determination of the Exchange Current in
the SOFC Composite Cathode, Ionics 12(6):339–341.
Solid-State Electrochemistry
