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Probing the reaction pathway in (La_(0.8)Sr_(0.2))_(0.95)MnO_(3+δ) using libraries of thin film microelectrodes

机译:使用薄膜微电极库探索(La_(0.8)Sr_(0.2))_(0.95)MnO_(3 +δ)中的反应途径

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摘要

Libraries of (La_(0.8)Sr_(0.2))_(0.95)MnO_(3+δ) (LSM) thin film microelectrodes with systematically varied thickness or growth temperature were prepared by pulsed laser deposition, and a novel robotic instrument was used to characterize these libraries in automated fashion by impedance spectroscopy. The measured impedance spectra are found to be described well by an electrochemical model based on a generalized transmission model for a mixed conducting oxide, and all trends are consistent with a reaction pathway involving oxygen reduction over the LSM surface followed by diffusion through the film and into the electrolyte substrate. The surface activity is found to be correlated with the number of exposed grain boundary sites, which decreases with either increasing film thickness (at constant growth temperature) or increasing film growth temperature (at constant thickness). These findings suggest that exposed grain boundaries in LSM films are more active than exposed grains towards the rate-limiting surface process, and that oxygen ion diffusion through polycrystalline LSM films is faster than many prior studies have concluded.
机译:通过脉冲激光沉积制备了厚度或生长温度有系统变化的(La_(0.8)Sr_(0.2))_(0.95)MnO_(3 +δ)(LSM)薄膜微电极的库,并使用新型机器人仪器通过阻抗谱以自动化方式对这些库进行表征。通过基于混合导电氧化物的广义透射模型的电化学模型,可以很好地描述所测得的阻抗谱,并且所有趋势与涉及在LSM表面上进行氧还原然后扩散通过薄膜并进入薄膜的反应路径一致。电解质基板。发现表面活性与暴露的晶界位点的数目相关,其随膜厚度增加(在恒定生长温度下)或膜生长温度增加(在恒定厚度下)而降低。这些发现表明,在限速表面过程中,LSM膜中暴露的晶界比暴露的晶粒更具活性,并且通过多晶LSM膜的氧离子扩散比许多先前的研究结论要快。

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