Nova Patents
EP1362831A2

Ion conductor

Abstract

The invention provides an ion conductor with high reliability that is a perovskite oxide characterized by the composition BaZr1-x-yCexMyO3-p, wherein M is a trivalent substituent element, x and y are at least zero but smaller than 1, x + y is larger than zero but smaller than 1, and p is larger than zero but smaller than 1.5.

EP1362831A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 13 February 2021, 5.6 years ago.

  1. Priority and filed
  2. Published
  3. Projected expiry
  4. Today

7 claims: 3 independent, 4 dependent

  1. 1
    An ion conductor that is a perovskite oxide characterized by the composition BaZr 1-x-y Ce x M y O 3-p , wherein M is a trivalent substituent element, x is at least zero but smaller than 1, y is larger than zero but smaller than 1, x + y is smaller than 1, and p is larger than zero but smaller than 1.5, characterized in that the ion conductor is a substantially single-phase polycrystal of cubic, tetragonal or orthorhombic crystal system whose unit cell axes a, b and c (with a≥b≥c) satisfy 0.8386nm <a<0.8916nm and b/a≥0.90.
  2. 2
    An ion conductor that is a perovskite oxide characterized by the composition BaZr 1-x-y Ce x M y O 3-p , wherein M is a trivalent substituent element, x is at least zero but smaller than 1, y is larger than zero but smaller than 1, x + y is smaller than 1, and p is larger than zero but smaller than 1.5, characterized in that the ion conductor is a substantially single-phase sintered product with a density of at least 96% of the theoretical density.
  3. 3
    An ion conductor that is a perovskite oxide characterized by the composition BaZr 1-x-y Ce x M y O 3-p , wherein M is a trivalent substituent element, x is at least zero but smaller than 1, y is larger than zero but smaller than 1, x + y is smaller than 1, and p is larger than zero but smaller than 1.5, characterized in that the ion conductor is a substantially single-phase sintered product with granular diameter of at least 1µm and not more than 30µm.