首页> 外文期刊>Bulletin of Materials Science >Mn valence state and electrode performance of perovskite-type cathode La_(0.8)Sr_(0.2)Mn_(1-x)Cu_xO_(3-δ) (x = 0, 0.2) for intermediate-temperature solid oxide fuel cells
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Mn valence state and electrode performance of perovskite-type cathode La_(0.8)Sr_(0.2)Mn_(1-x)Cu_xO_(3-δ) (x = 0, 0.2) for intermediate-temperature solid oxide fuel cells

机译:钙钛矿型阴极La_(0.8)Sr_(0.2)Mn_(1-x)Cu_xO_(3-δ)(x = 0,0.2)的锰价态和电极性能

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摘要

Cu-free and Cu-doped LSM system, La_(0.8)Sr_(0.2)Mn_(1-x)Cu_xO_(3-δ)(x = 0, 0.2), with perovskite structure were prepared using an EDTA combined citrate process and the effects of Cu ion at B-site were investigated. Electrical conductivity and polarization resistance of the Cu-doped LSM were 210 S·cm~(-1) at 750℃, and 2.54 Ω ? cm~2 at 800 ℃, respectively which were better than those of the Cu-free LSM. This indicated that the electrode performance of LSM was improved by the addition of Cu. The oxidation state of Mn ions increased with addition of Cu. The increase in the oxidation state of Mn ions was due to the formation of Mn~(4+) ions and oxygen vacancies. The addition of Cu ions to LSM systems could lead to enhanced electrode performance for oxygen reduction reactions originating from the change in valence of Mn ions.
机译:采用EDTA柠檬酸盐混合工艺制备了钙钛矿结构的无铜掺杂LSM体系La_(0.8)Sr_(0.2)Mn_(1-x)Cu_xO_(3-δ)(x = 0,0.2)。研究了铜离子在B位的影响。掺杂铜的LSM在750℃的电导率和极化电阻为210 S·cm〜(-1),在2.54Ω·Ω。在800℃时,cm〜2分别优于无铜LSM。这表明通过添加Cu可以改善LSM的电极性能。锰离子的氧化态随着铜的添加而增加。 Mn离子的氧化态增加是由于形成了Mn〜(4+)离子和氧空位。向LSM系统中添加Cu离子可导致源自Mn离子价数变化的氧还原反应电极性能增强。

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