陈长城

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2006年至今从事钙钛矿材料及固体氧化物燃料电池方面等新型能源方面的研究工作,其中2009年11月至2011年4月赴美国佐治亚理工学院材料科学与技术学院访问,在国际高能量密度电池、低温固态燃料电池领域的领军人物欧盟科学院院士Meilin Liu(刘美林)教授研究团队进行先进固体氧化物燃料电池研究及其应用。在有机无机金属卤...

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Enhancement of Electrochemical Properties, Impedance and Resistances of Micro-tubular IT-SOFCs with Novel Asymmetric Structure Based On BaZr0.1Ce0.7Y0.1Yb0.1O3−δ Proton Conducting Electrolyte

发布时间:2024-08-09  点击次数:

所属单位:理学院

发表刊物:Fuel Cells

关键字:Phase-inversion, Fuel Cell, Electrolyte, Micro-tubular Cells, Concentration Polarization, AC Impedance Spectroscopy.

摘要:Anode-supported micro-tubular SOFCs based on a proton and oxide ion mixed conductor electrolyte, BaZr0.1Ce0.7Y0.1Yb0.1O3−δ (BZCYYb), have been successfully fabricated via phase-inversion process. Typical micro-tubular cell with the configuration of Ni-BZCYYb|BZCYYb|La0.6Sr0.4Co0.2Fe0.8O3-δ, consists of anode support, electrolyte and cathode with thicknesses of 200, 12 and 10 μm, respectively. The cells show excellent electrochemical performance with the peak power densities of 1.040, 0.902, 0.721 and 0.590 W cm-2 at 750, 700, 650 and 600 0C, respectively, with humidified (3 vol.% H2O) hydrogen as the fuel and ambient air as the oxidant. The AC impedance spectroscopy result shows low concentration polarization values of 0.016–0.021 Ω cm2 at 750–600 0C. Further, significant performance enhancement is observed during long-term stability test at 600 and 750 0C under constant voltage of 0.5 and 0.7 V over 120 h, respectively, indicating excellent stability of BZCYYb under fuel cell operating condition. The high performance is attributed to high-quality cell, validated by the dense, crack-free BZCYYb electrolyte film supported by the anode with micro sponge-like pores.

备注:Yuan Dong, Xi’an University of Posts & Telecommunications Mingfei Liu, Georgia Institute of Technology Ben H. Rainwater, Georgia Institute of Technology Yaohui Bai, South China University of Technology

合写作者:董元,Mingfei Liu,Ben H. Rainwater,Yaohui Bai

第一作者:陈长城

论文类型:期刊论文

卷号:Accept

ISSN号:1615-6846

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发表时间:2019-11-21

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