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First-Principles Selection of Solute Elements for Er-Stabilized Bi2O3 Oxide-Ion Conductor with Improved Long-Term Stability at Moderate Temperatures

  • Kazuki Shitara*
  • , Takafumi Moriasa
  • , Akifumi Sumitani
  • , Atsuto Seko
  • , Hiroyuki Hayashi
  • , Yukinori Koyama
  • , Rong Huang
  • , Donglin Han
  • , Hiroki Moriwake
  • , Isao Tanaka
  • *此作品的通讯作者
  • Kyoto University
  • Japan Fine Ceramics Center
  • National Institute for Materials Science Tsukuba
  • Japan Science and Technology Agency

科研成果: 期刊稿件文章同行评审

摘要

Quality oxide-ion conductors are essential for clean-energy applications. Rare-earth-stabilized bismuth sesquioxide, δ-Bi2O3, exhibits a much greater oxide-ion conductivity at high temperatures than commonly used ZrO2- or CeO2-based electrolytes, but it suffers from serious conductivity degradation while annealing at moderate temperatures of ∼773 K, which is the target temperature for many applications. Here, we demonstrate that a novel set of solute elements for δ-Bi2O3 can significantly enhance the long-term stability at 773 K. A pure oxide-ion conductivity of 0.035 S/cm at 773 K remains unchanged during annealing for 100 h, which is five times greater than the best known solid-state oxide materials after long-term annealing. For materials design, we explore a range of chemical spaces using theoretical methods based on first-principles calculations. The order-disorder transition temperature of the anion sublattice, oxygen-ion diffusivity, and solution free energy are used as descriptors. The design concept is verified experimentally.

源语言英语
页(从-至)3763-3768
页数6
期刊Chemistry of Materials
29
8
DOI
出版状态已出版 - 25 4月 2017

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