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Relationship between Ionic Conductivity and Composition of Li2O-ZrO2-SiO2 Glasses Determined from Mixture Design

혼합물계획법에 의한 Li2O-ZrO2-SiO2 유리의 이온전도도와 조성의 관계

  • Kang, Eun-Tae (Division of Nano & Advanced Materials Science and Engineering, Engineering Research Institute, Gyeongsang National University) ;
  • Kim, Myoung-Joong (R&D center, Gonggan Ceramic Co., Ltd.) ;
  • Kim, Jae-Dong (ATT Ltd.)
  • 강은태 (경상대학교 나노.신소재공학부, 경상대학교 공학원) ;
  • 김명중 (공간세라믹스(주) 기술연구소) ;
  • 김재동 (ATT(주))
  • Published : 2007.04.30

Abstract

The ionic conductivity of $Li_2O-ZrO_2-SiO_2$ glasses has been designed and analyzed on the basis of a mixture design experiment with constraints. Fitted models for the activation energy and the ionic conductivity are as follows: $Q(kJ/moi)=54.8565x_1+144.825x_2+133.846x_3-170.908x_1x_3-334.338x_2x_3$ $log{\sigma}(300K)=-5.00245x_1-1.17876x_2-15.5173x_3+17.4522x_1x_3$. The electrical properties are very sensitive to the ratio of $Li_2O/SiO_2$. The effect of $ZrO_2$ is less than that of this ratio but $ZrO_2$ component attributes to the reduction of the activation energy. The optimal composition for best ionic conduction based on these fitted models is $55Li_2O{\cdot}10ZrO_2{\cdot}35SiO_2$. Its activation energy and ionic conductivity at 300 K are 46.98 kJ/mol and $1.08{\times}10^{-5}{\Omega}^{-1}{\cdot}cm^{-1}$, respectively.

Keywords

References

  1. J. B. Bates, N. J. Dudney, G. R. Gruzalski, R. A. Zuhr, A. Choudhury, C. F. Luck, and J. D. Roberston, 'Electrical Properties of Amorphous Lithium Electrolyte Thin Films,' Solid State Ionics, 53 647-54 (1992) https://doi.org/10.1016/0167-2738(92)90442-R
  2. P. Birke, W. F. Chu, and W. Weppner, 'Materials for Lithium Thin-Film Batteries for Application in Silicon Technology,' Solid State Ionics, 93 1-15 (1997) https://doi.org/10.1016/S0167-2738(96)00489-4
  3. S. J. Visco and M. Y. Chu, 'Protective Coatings for Negative Electrodes,' U.S. Patent 6, 025, 094 (2000)
  4. M. Yoshiyagawa and M. Tomozawa, 'Electrical Properties of Rapidly Quenched Lithium-Silicate Glasses,' J. de Phys., C9 411-14 (1982) https://doi.org/10.1051/jphyscol:1982979
  5. M. Tatsumisago, K. Yoneda, N. Machida, and T. Minami, 'Ionic Conductivity of Rapidly Quenched Glasses with High Concentration of Lithium Ions,' J. Non-Cryst. Solids, 95 & 96 857-64 (1987) https://doi.org/10.1016/S0022-3093(87)80691-9
  6. A. P. Novaes de Oliveira, C. Leonelli, T. Manfredini, G. C. Pellacani, C. Ramis, M. Trombetta, and G. Busca, 'Properties of Glasses belonging to the $Li_2O-ZrO_2-SiO_2$ System,' Phys. Chem. Glasses, 39 [4] 213-21 (1998)
  7. K. Miyauchi, K. Matsumoto, K. Kanehori, and T. Kudo, 'New Amorphous Thin Films Ion Conductive Solid Electrolyte,' Solid State Ionics, 9&10 1469-72 (1983) https://doi.org/10.1016/0167-2738(83)90197-2
  8. O. V. Mazurin, M. V. Strel'tsina, T. P. Shvaiko-Shvaik- Ovskaya, and A. O. Mazurina, 'Determination of the Most Probable Concentration Dependences of the Properties of Binary Glasses with the Use of the SciGlass Information System,' Glass Physics and Chemistry, 29 [6] 555-70 (2003) https://doi.org/10.1023/B:GPAC.0000007931.32598.94
  9. O. V. Mazurin, 'Glass Properties: Compliation, Evaluation, and Prediction,' J. Non-Cryst. Solids, 351 1103-12 (2005) https://doi.org/10.1016/j.jnoncrysol.2005.01.024
  10. I. I. Kitaigorodskii, I. I., and G. A. Ellern, 'Research of the Glass Formations B Alkaline Zirconium Silicate Systems,' Tr. Mosk. Khim. Teknol. Inst., 50 26-31 (1966)
  11. J. R. Macdonald, and J. A. Garber, 'Analysis of Impedance and Admittance Data for Solids and Liquids,' J. Electrochem. Soc., 124 [7] 1022-30 (1977) https://doi.org/10.1149/1.2133473
  12. D. W. Marquardt, 'Generalized Inverses, Ridge Regression, Biased Linear Estimation and Nonlinear Estimation,' Technometrics, 12 591-612 (1970) https://doi.org/10.2307/1267205
  13. J. A. Cornell, Experimental with Mixture; pp. 481, Wiley- Interscience Publication, 1990
  14. T. J. Mitchell, 'An Algorithm for Construction of 'Doptimal' Experimental Designs,' Technometrics, 16 203-10 (1974) https://doi.org/10.2307/1267940