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首页> 外文期刊>ACS applied materials & interfaces >Bismuth Doped Lanthanum Ferrite Perovskites as Novel Cathodes for Intermediate-Temperature Solid Oxide Fuel Cells
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Bismuth Doped Lanthanum Ferrite Perovskites as Novel Cathodes for Intermediate-Temperature Solid Oxide Fuel Cells

机译:铋掺杂镧铁氧体钙钛矿作为中温固体氧化物燃料电池的新型阴极

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摘要

Bismuth is doped to lanthanum strontium ferrite to produce ferrite-based perovskites with a composition of La_(0.8-x(Bi_xSr_(0.2)FeO_(3-δ) (0 ≤ x ≤ 0.8) as novel cathode material for intermediate-temperature solid oxide fuel cells. The perovskite properties including oxygen nonstoichiometry coefficient (5), average valence of Fe, sinterability, thermal expansion coefficient, electrical conductivity (a), oxygen chemical surface exchange coefficient (K_(chem)), and chemical diffusion coefficient (D_(chem)) are explored as a function of bismuth content. While a decreases with x due to the reduced Fe~(4+) content, D_(chem) and K_(chem) increase since the oxygen vacancy concentration is increased by Bi doping. Consequently, the electrochemical performance is substantially improved and the interfacial polarization resistance is reduced from 1.0 to 0.10 Ω. cm~2 at 700 °C with Bi doping. The perovskite with x = 0.4 is suggested as the most promising composition as solid oxide fuel cell cathode material since it has demonstrated high electrical conductivity and low interfacial polarization resistance.
机译:将铋掺杂到镧锶铁氧体中以生产具有La_(0.8-x(Bi_xSr_(0.2)FeO_(3-δ)(0≤x≤0.8)组成)的铁氧体基钙钛矿,作为中温固体氧化物的新型阴极材料钙钛矿性质包括氧非化学计量系数(5),平均铁价,可烧结性,热膨胀系数,电导率(a),氧化学表面交换系数(K_(chem))和化学扩散系数(D_(铋的含量随x的减小而降低,而Fe_(4+)含量降低则x减小,而Bi掺杂增加了氧空位浓度,D_(chem)和K_(chem)增大。因此,Bi掺杂在700°C时的电化学性能得到了显着改善,界面极化电阻从1.0降低至0.10Ω。cm〜2,x = 0.4的钙钛矿被认为是最有希望的固体氧化物燃料电池组成阴极由于已显示出高电导率和低界面极化电阻,因此这种材料是可行的。

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