无机材料学报 ›› 2019, Vol. 34 ›› Issue (10): 1109-1114.DOI: 10.15541/jim20190067 CSTR: 32189.14.10.15541/jim20190067

• 研究快报 • 上一篇    下一篇

Ca掺杂Sr2Fe1.5Mo0.5O6-δ材料的合成与作为对称固体氧化物燃料电池电极催化剂的性能研究

夏天1,2,孟燮1,骆婷1,占忠亮1()   

  1. 1. 中国科学院 上海硅酸盐研究所, 能量转换材料重点实验室, 上海 200050
    2. 中国科学院大学, 北京 100049
  • 收稿日期:2019-02-13 出版日期:2019-09-23 网络出版日期:2019-05-29

Synthesis and Evaluation of Ca-doped Sr2Fe1.5Mo0.5O6-δ as Symmetrical Electrodes for High Performance Solid Oxide Fuel Cells

XIA Tian1,2,MENG Xie1,LUO Ting1,ZHAN Zhong-Liang1()   

  1. 1. CAS Key Laboratory of Materials for Energy Conversion, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China
    2. University of Chinese Academy of Sciences, Beijing 100049, China
  • Received:2019-02-13 Published:2019-09-23 Online:2019-05-29
  • Supported by:
    National Natural Science Foundation of China(51672298, 51702344, 51737011);The State of Grid(SGSDJN00FZQT1700446)

摘要:

对称固体氧化物燃料电池由于生产过程简单、成本低, 受到了研究者的广泛关注。然而较低的电极催化性能制约了其进一步的发展。本研究利用溶胶-凝胶法合成了一系列钙取代Sr2Fe1.5Mo0.5O6的钙钛矿材料(Sr2-xCaxFe1.5Mo0.5O6-δ, x=0, 0.2, 0.4, 0.6), 并研究了其作为对称固体氧化物燃料电池电极催化剂的性能。X射线衍射(XRD)测试表明所有样品在空气与氢气气氛中均能保持立方钙钛矿结构。而在程序升温还原(TPR)过程中, Ca 2+的掺入能有效降低还原温度, 提升其对析氧反应的催化活性。对称阳极电池在氢气气氛中的测试表明, 当Ca 2+的掺入量为0.6时电池极化阻抗最小。利用流延骨架与湿化学浸渍法制备了单电池SC0.6FMO|La0.9Sr0.1Ga0.8Mg0.2O3(LSGM)| SC0.6FMO。以氢气作为燃料时, 单电池在800与650 ℃的最大功率密度分别为1.05与0.41 W?cm -2。以上结果表明Sr2-xCaxFe1.5Mo0.5O6-δ可以作为高效对称燃料电池的电极催化剂。

关键词: 对称固体氧化物燃料电池, 钙钛矿结构, 电极材料

Abstract:

A series of Ca-substituted Sr2Fe1.5Mo0.5O6-δ oxides, Sr2-xCaxFe1.5Mo0.5O6-δ (SCFMO, x=0, 0.2, 0.4 and 0.6), were synthesized and evaluated as potential electrodes for symmetrical solid oxide fuel cells. X-ray diffraction examination showed that all samples maintained cubic perovskite structure in both air and wet hydrogen atmospheres. Temperature programmed reduction measurements indicated that the Ca 2+ substitution promoted the catalytic activity of SCFMO toward oxygen evolution reactions. Symmetrical anode fuel cell measurements showed the lowest polarization resistance in humidified hydrogen emerged at x=0.6. Single cells-SC0.6FMO|La0.9Sr0.1Ga0.8Mg0.2O3(LSGM)|SC0.6FMO, fabricated via tape-casting and impregnation methods, produced peak power densities of 1.05 W·cm -2 at 800 ℃ and 0.41 W·cm -2 at 650 ℃ when operating on hydrogen fuels and air oxidants. These results demonstrate SC0.6FMO is a potential electrode material for symmetrical solid oxide fuel cells.

Key words: Symmetrical Solid Oxide Fuel Cells, perovskite, electrode materials

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