High Temperature Electrical Conductivity of Perovskite La0.98Sr0.02MnO3

페로프스카이트 $La_{0.98}Sr_{0.02}MnO_3$의 고온전기특성

  • 김명철 (군산대학교 공과대학 재료공학과) ;
  • 박순자 (서울대학교 공과대학 무기재료공학과)
  • Published : 1992.11.01

Abstract

High temperature electrical conductivity was measured for perovskite La0.98Sr0.02MnO3 at 200~130$0^{\circ}C$ as a function of Po2 and 1/T. Perovskite La1-xSrxMnO3 system is the typical oxygen electrode in solid oxide fuel cell (SOFC). Acetate precursors were used for the preparation of mixed water solution and the calcined powders were reacted with Na2CO3 flux in order to obtain highly reactive powders of perovskite La0.98Sr0.02MnO3. The relative density was greatly increased above 90% because of the homogeneous sintering. From the conductivity ($\sigma$)-temperature and conductivity-Po2 at constant temperature, the defect structure of La0.98Sr0.02MnO3 was discussed. From the slope of 1n($\sigma$) vs 1/T, the activation energy of 0.069 and 0.108eV were evaluated for above 40$0^{\circ}C$, respectively. From the relationship between $\sigma$ and Po2, it was found that the decomposition of La0.98Sr0.02MnO3 was occurred at 10-15.5 atm(97$0^{\circ}C$) and 10-11 atm(125$0^{\circ}C$). It is supposed that the improvement of p-type conductivity may be leaded by the increase of Mn4+ concentration through the substitution of divalent/monovalent cations for La site in LaMnO3.

Keywords

References

  1. Fuel Cell handbook Solid Oxide Electrolyle Fuel Cells A.J.Appleby;F.R.Foulikes
  2. J. Kor. Ceram Soc. v.29 no.5 Joining of 8 mol% YSZ Solid Electrolyte and Perovskite LaMnO₃ M.C. Kim;S.J. Park
  3. Adavanced Materials in Catalysts R.J.H. Voorhoeve
  4. J. Am. Ceram. Soc. v.75 no.2 Mechanism of Reaction between Lanthanum Manganite and Yttria-Stabilized Zirconia H. Taimatsu;K. Wada;H. Kaneko;H. Yamamura
  5. Nippon Seramikkus Kyokai Gakujutsu Ronbunshi v.97 no.10 Hot Pressing of Perovskitke LaN₁O₃ M.C. Kim;S.J. Park;H. Haneda;A. Watanabe;J. Tanaka;S. Shirashaki
  6. Mat Res Bull. v.24 Crystallographic, Thernal, and Electrochemical Properties of the System La₁-xSrxMnO₃for High Temperature Solid Electrolyte Fuel Cell A. Hammouche;E. Sierbert;A. Hammou
  7. Nippon Seramikkus kyokai Gakujutsu Ronbunshi v.97 no.1 Sintering and Electrical Conductivity of La₁-xSrxMnO₃ K. Katayama;T. Ishihara;H. Ohta;S. Takeuchi;Y. Esaki;E. Enukai
  8. J. Solid State Chem. v.10 Oxidative Nonstoichiometry in Perovskites, an Experimental Survey;the Defect Structure of an Oxidized Lanthanum Manganite by Powder Neutron Diffraction B.C. Tofield;W.R. Scott
  9. J. Solid State Chemistry v.42 Structure and Electrical Conductivity of La0.81Sr0.16MnO₃ M. Kertesz;I. Riess;D.S.Tannhauser
  10. J. Am Ceram. Soc. v.70 Some Roles of MgO and TiO₂in Densification of a Sinterable Alumma T. Ikegami;K. Kotani;K. Eguchi
  11. Mat. Res Bull. v.13 Nontoichiometric Behavior and Phase Stability of Rare Earth Manganites at 1200℃:(1) LaMnO₃ K. Kamata;T. Nakajima;T. Hayashi;T. Nakamura
  12. Mat Res. Bull v.14 Stability of the Perovskite LaBO₃(B=V, Cr, Mn, Fe, Co, Ni)in Reducing Atmosphere T. Nakamura;G Petzow;L.J. Gaukler
  13. Hyomen Kagaku v.8 no.1 Oxygen-Sorptive and Catalytic Properties of Mn-and Co-based Perovskite-type Oxides H.M. Zhang;Y. Teraoka;N. Yamazoe