Development of Novel Techniques for Determining the Oxygen Tracer Diffusion Coefficients in Oxides II - Measurements of the Depth Profiles of $^{18}O$ Concentration in the solid Samples by Raman Spectroscopy

산화물에서의 산소추적자확산계수를 결정하는 새로운 방법의 개발 II - 라만분광법에 의한 고체시료 중의 시간에 따른 $^{18}O$ 농도변화 측정 -

  • 김병국 (서울대학교 무기재료공학과, 일본 카나가와과학기술아카데미) ;
  • 마하구찌히로오 (일본 카나가와과학기술아카데미) ;
  • 박순자 (서울대학교 무기재료공학과)
  • Published : 1994.12.01

Abstract

A novel technique for determining the oxygen tracer diffusion coefficients in oxides was developed. After the 16O-18O solid-gas exchange reactions between 16O in the oxides and 18O in the ambient gas, Raman spectra of the cross sections of oxide samples were measured in a spatial resolution of 5 ${\mu}{\textrm}{m}$. From thus obtained Raman spectra, depth profiles of 18O concentration in the oxide samples were calculated. The oxygen tracer diffusion coefficients and the surface exchange coefficients were determined under the assumptions that samples are semi-infinite slab and that the surface exchange reactionsare not negligible. The oxygen tracer diffusion coefficient of 2.8 mol% Y2O3-containing tetragonal ZrO2 polycrystals, 8 mol% Y2O3-containing ZrO2 polycrystals, and 10 mol% Y2O3-containing cubic ZrO2 single crystals (along the a axis) are as follows.

Keywords

References

  1. Diffusion in Crystalline Solids The Measurement of Tracer Diffusion Coefficients in Solids S.J. Rothman;G.E. Murch(ed.);A.R. Nowick(ed.)
  2. J Mater. Sci. v.15 Bibliography, Self-Diffusion and Impurity Diffusion in Oxides R. Freer
  3. Raman Spectroscopy H. Hamaguchi;T. Hirakawa
  4. 한국요업학회지 v.31 no.11 산화물에서의 산소추적자확산계수를 결정하는 새로운 방법의 개발 Ⅰ-라만분광법에 의한 분위기가스 중의 시간에 따른 $18^O$2농도변화 측정- 김병국;하마구찌히로우;박순자
  5. Mathematics of Diffusion J. Crank
  6. J. Ceram. Soc. Jpn. v.99 no.1 Oxygen Diffusion in Y₂O₃-Containing Tetragonal Zirconia Polycrystals with Different Grain Sizes Y. Ikuma;Y. Tsubaki;T. Masaki
  7. J. Am. Ceram. Soc. v.42 no.8 Oxygen Ion Mobility in Cubic $Zr_0.85$$Ca_0.15$$O_1.85$ W.D. Kingery;J. Pappis;M.E. Doty;D.C. Hill
  8. J. Amer. Ceram. Soc. v.49 no.3 Oxygen Exchange and Diffusion in Calcia-Stabilized Zirconia L.A. Simpson;R.E. Carter
  9. Nucl. Instr Methods in Phys Res. v.218 no.1-3 The Determination of the Oxygen Self-Diffusion and Gas-Solid Exchange Coefficients for Stabilized Zirconia by SIMS D.S. Tannhauser;J.A. Kilner;B.C.H. Steele
  10. Transport in Nonstorchiometric Compounds Oxygen Self-Diffusion in Cubic ZrO₂ Solid Solutions Y. Oishi;K. Ando;G. Simkovich(ed.);V.S. Stubican(ed.)
  11. Solid State Ionics v.18,19 no.2 A Study of Anion Transport in Bismuth Based Oxide systems by Electrical Conductivity and Secondary Ion MassSpectroscopy(SIMS) B.C.H. Steele;J.A. Kilner;P.F. Dennis;A.E. McHale;M. Van Hemert;A.J. Burggarf
  12. Advances in Ceramics v.12 Defect Structure and Transport Properties of ZrO₂-Based Solid Electrolytes J.F. Baumard;P. Abelard;N. Claussen(ed.);M. Ruhle(ed.);A.H. Heuer(ed.)
  13. J. Mater. Sci. v.18 no.5 Electrical Behaviour of Doped-Yttria Stabilized Zirconia Ceramic Materials C. Pascual;J.R. Jurado;P. Duran