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Performance of anode-supported solid oxide fuel cell with thin bi-layer electrolyte by pulsed laser deposition

机译:薄层双层电解质阳极支撑固体氧化物燃料电池的脉冲激光沉积性能

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摘要

Anode-supported yttria stabilized zirconia (YSZ)/samaria doped ceria (SDC) bi-layer electrolytes with uniform thickness and high density were fabricated by pulsed laser deposition at 1000℃ Fuel cells with such bi-layer electrolytes were fabricated and tested, yielding open circuit voltages from 0.94 to 1.0 V at 600-700℃ Power densities from 0.4 to 1.0W cm~(-2) at 0.7 V were achieved in air at temperatures of 600-700 ℃. Cell performance was improved in flowing oxygen, with an estimated peak power density of over 2Wcm~(-2) at 650℃, assuming the same overall resistance over the entire range of current density. The high cell performance was attributed to the very low ohmic resistance of the fuel cell, owing to the small thickness of the electrolyte. Stable performance was also demonstrated in that the voltage of the fuel cell showed very little change at a constant current density of 1 Acm~(-2) during more than 400 h of operation at 650 ℃ in flowing oxygen. SEM analysis of the fuel cell after testing showed that the bi-layer electrolyte had retained its chemical and mechanical integrity.
机译:通过在1000℃下脉冲激光沉积制备厚度均匀,密度高的阳极负载氧化钇稳定的氧化锆(YSZ)/掺杂氧化铈的二氧化铈(SDC)双层电解质。在600-700℃的空气中获得0.94至1.0 V的电路电压,在0.7 V时从0.4至1.0W cm〜(-2)的功率密度。假设在整个电流密度范围内具有相同的总电阻,则在流动的氧气中电池的性能得到改善,在650℃时估计的峰值功率密度超过2Wcm〜(-2)。高电池性能归因于燃料电池的极低欧姆电阻,这归因于电解质的厚度小。在650℃的流动氧气中,在恒定电流密度为1 Acm〜(-2)的条件下,燃料电池的电压在650℃下运转400小时以上时,电压的变化很小。测试后对燃料电池的SEM分析表明,双层电解质保留了其化学和机械完整性。

著录项

  • 来源
    《Journal of power sources》 |2012年第15期|p.292-296|共5页
  • 作者单位

    Pacific Northwest National Laboratory, Richland, WA, 99352. USA;

    Pacific Northwest National Laboratory, Richland, WA, 99352. USA;

    Pacific Northwest National Laboratory, Richland, WA, 99352. USA;

    Pacific Northwest National Laboratory, Richland, WA, 99352. USA;

    Center for Advanced Materials, University of Houston, Houston, TX 77024, USA;

    Center for Advanced Materials, University of Houston, Houston, TX 77024, USA;

    Center for Advanced Materials, University of Houston, Houston, TX 77024, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bi-layer electrolyte; pulsed laser deposition; ohmic resistance; stability;

    机译:双层电解质脉冲激光沉积欧姆电阻稳定性;

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