Ab'/> <![CDATA[Structural and electrical properties of Bi <ce:inf loc='post'>3</ce:inf>Y <ce:inf loc='post'>0.9</ce:inf>W <ce:inf loc='post'>0.1</ce:inf>O <ce:inf loc='post'>6.15</ce:inf>-La <ce:inf loc='post'>0.8</ce:inf>Sr <ce:inf loc='post'>0.2</ce:inf>MnO <ce:inf loc='post'>3</ce:inf> (BiYWO-LSM) composites]]>
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3Y 0.9W 0.1O 6.15-La 0.8Sr 0.2MnO 3 (BiYWO-LSM) composites]]>

机译:<!“inf place =”post“> 0.1 o 6.15 -a 0.8 SR 0.2 MNO 3 (BIYWO-LSM)复合材料]]>

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AbstractElectrical conductivity and structural behavior in Bi3Y0.9W0.1O6.15-La0.8Sr0.2MnO3(BiYWO-LSM) composite cathodes for intermediate temperature solid-oxide fuel cells (IT-SOFCs) have been investigated. The ionically conducting component (BiYWO) was selected as it not only exhibits high oxide ion conductivity at intermediate temperatures, but also shows good long-term stability. The LSM component is a well-known electronic conductor, commonly used for SOFC cathodes and also shows high interfacial polarization effects. Both composite components exhibit similar thermal expansion coefficients. Composites of different molar ratios of components were prepared by sintering the components together at 850°C. Electrical behavior was studied by a.c. impedance spectroscopy and transference number measurements were used to determine the ionic and electronic contributions to total conductivity. Percolation type behavior was observed for total conductivity and the percolation threshold value was determined to be in the bismuth rich region of the compositional range, due to the significant difference in the grain sizes of the two components. Ionic and electronic components of the total conductivity at, above and below the percolation threshold are discussed. Stability measurements on a composition close to the percolation threshold show some degree of conductivity decay on prolonged annealing at 650°C, which is partly recoverable on heating to higher temperatures.Highlights?Ionic and electronic conductivity vary with volume fraction of the components in BiYWO-LSM composite.?Percolation type behaviour was observed and percolation threshold was obtained.?30% decay in total conductivity on prolonged annealing a composite close to threshold value with 85% recovery on reheating.]]>
机译:<![cdata [ 抽象 在BI 3 Y 0.9 W 0.1 O 6.15 < / CE:INF> -LA 0.8 SR 0.2 MNO 3 (BIYWO-LSM)用于中间温度固体氧化物燃料电池(IT-SOFC)的复合阴极。选择离子导电组分(Biywo),因为它不仅在中间温度下表现出高氧化物离子传导性,而且显示出良好的长期稳定性。 LSM组件是众所周知的电子导体,通常用于SOFC阴极并且还显示出高界面偏振效应。两种复合组件都表现出类似的热膨胀系数。通过在850℃下将组分烧结在一起制备不同摩尔比的组分的复合材料。通过A.C的电气行为。阻抗光谱和转移数量测量用于确定离子和电子贡献对总电导率。由于两种组分的晶粒​​尺寸的显着差异,观察到总电导率观察到总电导率的渗透型行为,并且由于两种组分的晶粒​​尺寸的显着差异,确定渗透阈值是在组成范围的富铋区域中。讨论了总电导率的离子和电子元件,上方和低于渗透阈值。靠近渗透阈值的组合物的稳定性测量显示出在650℃的延长退火上的一定程度的电导率衰减,这在加热至更高的温度上部分可回收。 亮点 离子和电子电导率随Biywo-lsm复合材料中组件的体积分数而变化。 Percolation观察到类型行为并获得阈值。 < CE:标签>? 长期退火的总电导率的衰减,延长阈值接近阈值,再加热85%回收率。 ]]>

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