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1997 Fiscal Year Final Research Report Summary

Synthesis of Iithium ion conductors with an average structure

Research Project

Project/Area Number 08455405
Research Category

Grant-in-Aid for Scientific Research (B)

Allocation TypeSingle-year Grants
Section一般
Research Field 無機工業化学
Research InstitutionNIIGATA UNIVERSITY

Principal Investigator

SATO Mineo  Niigata University, Depart.of Chem.and Chem.Eng., Professor, 工学部, 教授 (30149984)

Co-Investigator(Kenkyū-buntansha) KODAMA Tatsuya  Niigata University, Depart.of Chem.and Chem.Eng., Associate professor, 工学部, 助教授 (60272811)
Project Period (FY) 1996 – 1997
KeywordsLithium ionic conductor / Phase transition / Superionic conductor / Solid state reaction / Lithium ion battery / Cathode material
Research Abstract

The present study has been aimed to obtain fundamental aspects on the design for a room temperature superionic conducting material, Li_3M_2 (PO_4)_3 (M=Sc and In), which has a so called average structure at a high temperature. In order to obtain the superionic conducting phase Li_3M_2 (PO_4)_3 (M=Sc and In), several kinds of aliovalent ions such as Mg^<2+>, Ti^<4+>, Zr^<4+>, Sn^<4+>, Hf^<4+>, Nb^<5+>, and Ta^<5+> were substituted for the M site. The differential thermal analysis indicated that no phase transition existed in the divalent ion substituted samples with the substituted ratio over 5 mol%, the tetravalent ion substituted samples with the ratio over 5 mol%, and the pentavalent ion substituted samples with the ratio over 2.5 mol%. The highest ionic conducting materials, which were found in the Ti-and Zr-substituted samples, has a quite higher room temperature conductivity by three orders of magnitude than that of the unsubstituted samples. The neutron diffraction measurements confirmed the stabilization of the high temperature phase at room temperature in the substituted samples, and also confirmed a disorder of Li ion distribution among three kinds of available sites, giving a driving factor to the stabilization of the high temperature phase. The substituted materials could be a promising material for the solid electrolyte in a solid state lithium battery or a chemical sensor.
We also investigated the stabilization of the high temperature phase of Li_3V_2 (PO_4)_3, which has the same structure as that of Li_3M_2 (PO_4)_3. The stabilization of the high temperature phase was also observed in this compound by substituting 10 mol% of Zr for M sites. The charge-discharge capacity of an electrochemical lithium cell where this material was used as a cathode material was found to be improved by 20%.

  • Research Products

    (6 results)

All Other

All Publications (6 results)

  • [Publications] M.Sato 他5名: "Synthesis and properties of lithium ion conductors Li_<3-2X>(Sc_<1-X>Zr_X)_2(PO_4)_3" Journal of Alloys and Compounds. 250. 510-514 (1997)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] T.Suzuki 他6名: "Stabilization of superionic conduction phase in Li_3Sc_2(PO_4)_3" Solid State Ionics. 104. 27-33 (1997)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] K.Yoshida 他3名: "Cathode characteristics of lithium transition metal phosphate synthesized by ion-exchange reaction" Electroceramics in Japan 97. (印刷中).

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] M.SATO et al.: "Synthesis and properties of lithium ion conductors Li_<3-2x> (SC_<1-x>Zr_x)_2 (PO_4)_3." Journal of Alloys and Compounds. 250. 510 (1997)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] T.Suzuki et al.: "Stabilization of superionic conduction phase in Li_3Sc_2 (PO_4)_3." Soild State Ionics. 104. 27 (1997)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] K.YoshidaA et al.: "Cathode characteristics of lithium transition metal phosphate synthesized by ion-exchange reaction." Electrocearamics in Japan 97. (in press).

    • Description
      「研究成果報告書概要(欧文)」より

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Published: 1999-03-16  

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