首页> 外文OA文献 >Electrochemical Performance and Compatibility of La2NiO4+δ Electrode Material with La0.8Sr0.2Ga0.8Mg0.2O3-δ Electrolyte for Solid Oxide Electrolysis
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Electrochemical Performance and Compatibility of La2NiO4+δ Electrode Material with La0.8Sr0.2Ga0.8Mg0.2O3-δ Electrolyte for Solid Oxide Electrolysis

机译:La2NiO4 +δ电极材料与La0.8sr0.2Ga0.8mg0.2O3-δ电解质在固体氧化物电解中的电化学性能和相容性

摘要

La0.8Sr0.2Ga0.8Mg0.2O3-δ (LSGM) is an oxygen ion conducting electrolyte material widely used in solid oxide fuel cells (SOFC). La2NiO4+δ (LNO) is a mixed ionic-electronic conducting layered perovskite with K2NiF4 type structure which conducts oxygen ions via oxygen interstitials. LNO has shown promising results as an SOFC electrode in the literature. In this work the compatibility and performance of LNO electrodes on the LSGM electrolyte material for solid oxide electrolysis cell (SOEC) is investigated.udThe materials were characterised as SOEC/SOFC cells by symmetrical and three electrode electrochemical measurements using Electrochemical Impedance Spectroscopy (EIS). Conductivity and ASR values were obtained in the temperature range 300 – 800oC with varying atmospheres of pH2O and pO2. The cells were also subjected to varied potential bias, mimicking fuel cell or electrolysis use. Enhancement of LNO performance was observed with the application of potential bias in both anodic and cathodic mode of operation in all atmospheres with the exception of cathodic bias in pO2 = 6.5x10-3 atm. In ambient air at 800oC LNO ASRs were 2.82Ω.cm2, 1.83Ω.cm2 and 1.37Ω.cm2 in OCV, +1000mV bias and -1000mV bias respectively. In low pO2 at 800oC LNO ASRs were 9.17Ω.cm2, 1.74Ω.cm2 and 456.9Ω.cm2 in OCV, +1000mV bias and -1000mV bias respectively. The increase in ASR with negative potential bias in low pO2 is believed to be caused by an increase in mass transport and charge transfer impedance responses.udMaterial stability was confirmed using X-Ray Diffraction (XRD), in-situ high temperature pH2O and pO2 XRD. In-situ XRD displayed single phase materials with no observable reactivity in the conditions tested. Scanning Electron Microscopy images of cells tested by EIS in all atmospheres displayed no microstructure degradation except for those cells tested in a humid atmosphere which display a regular pattern of degradation on the LNO surface attributed to reaction with the Pt mesh current collector.
机译:La0.8Sr0.2Ga0.8Mg0.2O3-δ(LSGM)是一种氧离子传导电解质材料,广泛用于固体氧化物燃料电池(SOFC)。 La2NiO4 +δ(LNO)是具有K2NiF4型结构的混合离子-电子导电层状钙钛矿,可通过氧间隙传导氧离子。在文献中,LNO作为SOFC电极已显示出令人鼓舞的结果。在这项工作中,研究了LNO电极在用于固体氧化物电解电池(SOEC)的LSGM电解质材料上的相容性和性能。 ud通过使用电化学阻抗谱(EIS)进行对称和三电极电化学测量,将材料表征为SOEC / SOFC电池。电导率和ASR值是在300 – 800oC的温度范围内,不同的pH2O和pO2气氛下获得的。电池还受到各种电位偏置的影响,类似于燃料电池或电解用途。在所有大气中,在阳极和阴极运行模式下均施加电势偏置可观察到LNO性能的增强,但pO2 = 6.5x10-3 atm的阴极偏置除外。在800oC的环境空气中,OCV的LNO ASR分别为2.82Ω.cm2、1.83Ω.cm2和1.37Ω.cm2,偏置电压为+ 1000mV,偏置电压为-1000mV。在800oC的低pO2中,OCV的LNO ASR分别为9.17Ω.cm2、1.74Ω.cm2和456.9Ω.cm2,偏压分别为+ 1000mV和-1000mV。在低pO2中具有负电位偏置的ASR的增加被认为是由于质量传输和电荷转移阻抗响应的增加所致。 ud使用X射线衍射(XRD),原位高温pH2O和pO2证实了材料的稳定性XRD。原位XRD显示在测试条件下没有可观察到的反应性的单相材料。通过EIS在所有大气中测试的细胞的扫描电子显微镜图像均未显示出微观结构退化,除了在潮湿大气中测试的那些细胞在LNO表面显示出规律的降解模式(归因于与Pt网格集电器的反应)。

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    Fawcett Lydia;

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  • 年度 2014
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