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Desenvolvimento de componentes nanométricos para aplicação em células a combustível à base de sólidos estruturados e filmes finos

机译:基于结构化固体和薄膜的纳米组件在燃料电池中的应用开发

摘要

The present work aims the preparation of filmes of strontium-doped lanthanum manganite (perovskita) yttria-stabilized zirconia (LSM-SDC) films deposited on substrate of YSZ by means of spin coating technique having as principal objectivetheir application to solid oxide fuel cells of intermediate temperature. La0,8Sr0,2MnO3 and Ce0,8Sm0,2O1,9 were obtained by modified Pechini method by use of gelatinwhich act as polymerization agent. The powders obtained were characterized by Xray fluorescence, X ray diffraction, electronic scanning microscopy and the superficial area by BET method. The results obtained by X-ray fluorescence showed that the route adopted for obtention of powders was effective in the obtention of the compositions with close values to the stoichiometrics. Ethyl cellulose was used as pore-forming agent and mixed with the LSM-SDC powders in weight proportions of 1:24, 2:23 and 1:9. The films were sintered at 1150 °C for 4 h and characterized by X-ray diffraction and scanning electron microscopy technique (SEM) and atomic force. The phases quantification of the precursory powders and of the obtained films was carried through Rietveld method. According with the analysis of SEM, as the content of ethyl cellulose was increased, the pore distribution in films become more uniform and the pore size reduced. The methodology used for the obtention of the films was very efficient, considering a material was obtained with characteristics that were proper to the application as electrolyte/cathode system to solid oxide fuel cells
机译:本工作旨在通过旋涂技术制备沉积在YSZ衬底上的锶掺杂锰酸镧(钙钛矿)钇稳定氧化锆(LSM-SDC)薄膜,其主要目的是将其应用于中间体的固体氧化物燃料电池温度。以明胶为聚合剂,采用改进的Pechini法制备了La0,8Sr0,2MnO3和Ce0,8Sm0,2O1,9。通过X射线荧光,X射线衍射,电子扫描显微镜和通过BET法对表层进行表征。通过X射线荧光获得的结果表明,获得粉末的途径对于获得与化学计量值接近的组合物是有效的。乙基纤维素用作成孔剂,并与LSM-SDC粉末按重量比1:24、2:23和1:9混合。将膜在1150°C下烧结4 h,并通过X射线衍射和扫描电子显微镜技术(SEM)以及原子力进行表征。前体粉末和所得膜的相定量通过Rietveld方法进行。根据SEM分析,随着乙基纤维素含量的增加,膜中的孔分布变得更均匀并且孔径减小。考虑到所获得的材料具有适合作为固体氧化物燃料电池的电解质/阴极系统应用的特性,因此用于获得薄膜的方法非常有效。

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    Cesário Moises Rômolos;

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  • 年度 2009
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  • 正文语种 por
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