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Electronic Percolation Threshold of Self-Standing Ag-LaCoO3 Porous Electrodes for Practical Applications

机译:实际应用中自持式Ag-LaCoO3多孔电极的电子渗透阈值

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摘要

Perovskite LaCoO3 materials have various applications, from selective permeable membranes and gas sensing devices to water splitting applications. However, the intrinsic electrical resistivity of the perovskite limits the applicative potential. To overcome that, Ag powder was used with LaCoO3 to obtain porous composite electrodes with enhanced conductivities. For that, a series of composite Ag-LaCoO3 powders were prepared into pellets and pre-sintered at various temperatures up to 1000 C. Their structural properties and morphology were investigated by X-ray diffraction and scanning electron microscopy. The electronic transport of compacted specimens was studied by impedance spectroscopy. The results indicate that the presence of Ag acts as pre-sintering additive to obtain porous electrodes, with porosity values as high as 40% at 50 vol. % Ag. Moreover, the overall electrical resistivity of the composite electrodes varied well over four orders of magnitude. The results are discussed within the generalized Bruggeman theory for effective media comprising arbitrarily shaped metallic and semiconducting inclusions.
机译:钙钛矿型LaCoO <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm1” overflow =“ scroll”> < mn> 3 材料具有多种应用,从选择性渗透膜和气体传感设备到水分解应用。然而,钙钛矿的固有电阻率限制了应用潜力。为了克服这一点,将银粉与LaCoO 3 以获得具有增强电导率的多孔复合电极。为此,需要一系列复合Ag-LaCoO 3 粉末制成小丸,并在高达1000个 C。通过X射线衍射和扫描电子显微镜研究了它们的结构性质和形态。通过阻抗谱研究了压实样品的电子传输。结果表明,Ag的存在充当预烧结添加剂以获得多孔电极,在50vol%时孔隙率值高达40%。 Ag含量而且,复合电极的总电阻率在四个数量级上变化很大。在广义Bruggeman理论中讨论了有关有效介质的结果,该介质包括任意形状的金属和半导体夹杂物。

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