Advertisement

Applied Physics A

, Volume 74, Supplement 1, pp s1236–s1238 | Cite as

Characterization of the intermediate-range order in new superionic conducting AgI–Ag2S–AgPO3 glasses by neutron diffraction

  • E. Kartini
  • S.J. Kennedy
  • K. Itoh
  • T. Fukunaga
  • S. Suminta
  • T. Kamiyama

Abstract.

Superionic conducting glasses are of considerable technological interest because of their use in batteries, sensors, and displays. We have investigated the new ternary systems AgI–Ag2S–AgPO3 where the ratio AgI:Ag2S is 1:1. The system (AgI)x(Ag2S)x(AgPO3)1-2x, for a AgI+Ag2S fraction less than 82 mol %, yields glasses. We have used a neutron-diffraction technique to obtain the total scattering structure factor S(Q) of this system at room temperature by using the HIT spectrometer at the High Energy Accelerator (KEK), Tsukuba, Japan. As for AgI–AgPO3 glasses, S(Q) shows a peak at anomalously low Q in the range from 0.6 to 0.9 Å-1. This peak is not observed in the corresponding glass Ag2S–AgPO3 or pure AgPO3. The peak depends strongly on the dopant salt. Its intensity increases as the amount of (AgI+Ag2S) increases and its position shifts to lower Q, while the number density of the glasses decreases with x. This peak can be associated with an intermediate structure of particles lying inside a continuous host with the characteristic length between 5 and 10 Å [1].

PACS: 66.30.H; 81.05.P; 61.12 

Copyright information

© Springer-Verlag 2002

Authors and Affiliations

  • E. Kartini
    • 1
  • S.J. Kennedy
    • 3
  • K. Itoh
    • 4
  • T. Fukunaga
    • 4
  • S. Suminta
    • 2
  • T. Kamiyama
    • 1
  1. 1.Neutron Science Laboratory, Institute of Materials Structure Science, KEK, Tsukuba, JapanJP
  2. 2.Research and Development Center for Materials Science and Technology, BATAN, IndonesiaID
  3. 3.Neutron Scattering Group, Australian Nuclear Science and Technology Organisation, NSW 2234, AustraliaAU
  4. 4.Research Reactor Institute, Kyoto University, Kumatori-cho, Osaka, JapanJP

Personalised recommendations