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首页> 外文期刊>Advanced energy materials >Yttrium-Doped Barium Zirconate-Cerate Solid Solution as Proton Conducting Electrolyte: Why Higher Cerium Concentration Leads to Better Performance for Fuel Cells and Electrolysis Cells
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Yttrium-Doped Barium Zirconate-Cerate Solid Solution as Proton Conducting Electrolyte: Why Higher Cerium Concentration Leads to Better Performance for Fuel Cells and Electrolysis Cells

机译:Yttrium掺杂的钡锆凝聚力固溶固溶电解质:为什么较高的铈浓度导致燃料电池和电解细胞的性能更好

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摘要

Proton conducting Y-doped BaZrO3, BaCeO3 and their solid solutions are receiving increasing attention due to their promising application as electrolytes in ceramic fuel cells and electrolysis cells. However, the literature indicates a clear tendency that the performance of the cells increases with increasing Ce content in the electrolyte. In this work, to elucidate this phenomenon, a systematic work is performed on investigating the phase, hydration, and transport behaviors of BaZr0.8-xCexY0.2O3-delta (BZCY20). The results reveal that in the temperature range between 500 and 700 degrees C, with increasing Ce content, the dehydration temperature elevates and the proton concentration increases, showing that the Ce component favors the stabilization of protons. Furthermore, the transport number of hole conduction decreases, whereas the transport number of ionic conduction increases with the increasing Ce content. By further separating the contribution of oxide ions and protons, it is found that the oxide ion conductivity increases with the increasing Ce content at higher temperatures of 600 and 700 degrees C. Such decreased hole conductivity and increased oxide ion conductivity result in the enhancement of the ionic conduction of BZCY20 with increasing Ce content, and therefore improve the performance of fuel cells and electrolysis cells.
机译:质子导电Y掺杂的Bazro3,Baceo3及其固体溶液正在由于其希望在陶瓷燃料电池和电解细胞中作为电解质而产生的升高。然而,文献表明细胞的性能随着电解质中的增加而增加的细胞的性能增加。在这项工作中,为了阐明这种现象,对研究Bazr0.8-XCEXY0.2O3-DELTA(BZCY20)的相,水合和运输行为进行系统工作。结果表明,在500至700℃的温度范围内,随着Ce含量的增加,脱水温度升高,质子浓度增加,表明CE组分有利于质子的稳定性。此外,空穴传导的传输次数减小,而离子传导的传输次数随着CE含量的增加而增加。通过进一步分离氧化物离子和质子的贡献,发现氧化物离子传导率随着在600和700℃的较高温度下的增加的CE含量增加。这种降低的空穴导电性和增加的氧化物离子电导率导致增强BZCY20的离子传导随着CE含量的增加,因此提高了燃料电池和电解细胞的性能。

著录项

  • 来源
    《Advanced energy materials》 |2021年第8期|2003149.1-2003149.11|共11页
  • 作者单位

    Soochow Univ Coll Energy Prov Key Lab Adv Carbon Mat & Wearable Energy Tec 1 Shizi St Suzhou 215006 Peoples R China|Kyoto Univ Dept Mat Sci & Engn Sakyo Ku Yoshida Honmachi Kyoto 6068501 Japan;

    Univ Oslo Ctr Mat Sci & Nanotechnol Dept Chem FERMiO Gaustadalleen 21 N-0349 Norway Norway;

    Univ Oslo Ctr Mat Sci & Nanotechnol Dept Chem FERMiO Gaustadalleen 21 N-0349 Norway Norway;

    Kyoto Univ Dept Mat Sci & Engn Sakyo Ku Yoshida Honmachi Kyoto 6068501 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    barium cerate; barium zirconate; electrolytes; proton conductors; transport number;

    机译:钡冷却;钡锆酸钡;电解质;质子导体;运输号码;

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