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Evaluation of yttrium-doped strontium titanium oxide as a solid oxide fuel cell anode.

机译:钇掺杂锶钛氧化物作为固体氧化物燃料电池阳极的评估。

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摘要

A number of perovskite oxides, typically, heavily doped SrTiO3 samples, were synthesized and characterized with a view to establishing their potential as anode materials for solid oxide fuel cells (SOFCs). The structure, microstructure, electrical conductivity, reduction-oxidation behavior, phase stability, compatibility with electrolytes, and performance in SOFC operation were assessed.; Ceramic samples were prepared with the formula (Sr1−xR x)(Ti1−yTy)O3 (R = rare earth elements, T = transition metals) and with charge balance achieved by A-site deficiency. Electrical conductivities were examined by the do four-probe method and impedance spectroscopy. It was found that yttrium is soluble in SrTiO 3 (SYT) up to 8 mol% and has marked effects on conductivity. Electrical conductivities were observed to increase with increasing donor-doping level, on reduction in low oxygen partial pressures. Electrical conductivity with values as high as 82 S/cm was achieved at 800°C and P(O2) = 10−19 atm. Electrical conductivities were reversible upon reduction and oxidation. The thermal expansion coefficient is compatible with electrolyte materials such as yttria-stabilized ZrO2 and doped LaGaO3. Cobalt-doped SYT, which showed a relatively high resistance to oxidation, was tested as the anode material in a fuel cell. Yttrium-doped SrTiO3 meets the requirements for the anode in SOFCs to a substantial degree, and is a promising alternative anode material.
机译:合成并表征了许多钙钛矿氧化物,通常是重掺杂SrTiO 3 样品,以建立其作为固体氧化物燃料电池(SOFC)阳极材料的潜力。评估了结构,微观结构,电导率,还原氧化行为,相稳定性,与电解质的相容性以及SOFC操作的性能。用公式(Sr 1-x R x )(Ti 1-y T y )O 3 (R =稀土元素,T =过渡金属),并通过A位缺陷实现电荷平衡。通过四探针法和阻抗谱检查电导率。结果表明,钇在SrTiO 3 (SYT)中的溶解度高达8 mol%,并且对电导率有显着影响。随着低氧分压的降低,电导率随施主掺杂水平的增加而增加。在800°C和P(O 2 )= 10 −19 atm时,电导率达到82 S / cm。还原和氧化后,电导率是可逆的。热膨胀系数与诸如氧化钇稳定的ZrO 2 和掺杂的LaGaO 3 等电解质材料兼容。表现出较高抗氧化性的掺钴SYT被用作燃料电池中的阳极材料。钇掺杂的SrTiO 3 在很大程度上满足了SOFC中阳极的要求,是一种有希望的替代阳极材料。

著录项

  • 作者

    Hui, Shiqiang.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 222 p.
  • 总页数 222
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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