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Geopolymer/CeO2 as Solid Electrolyte for IT-SOFC

机译:地质聚合物/ CEO2作为IT-SOFC的固体电解质

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摘要

As a material for application in the life sciences, a new composite material, geopolymer/CeO2 (GP_CeO2), was synthesized as a potential low-cost solid electrolyte for application in solid oxide fuel cells operating in intermediate temperature (IT-SOFC). The new materials were obtained from alkali-activated metakaolin (calcined clay) in the presence of CeO2 powders (x = 10%). Besides the commercial CeO2 powder, as a source of ceria, two differently synthesized CeO2 powders also were used: CeO2 synthesized by modified glycine nitrate procedure (MGNP) and self-propagating reaction at room temperature (SPRT). The structural, morphological, and electrical properties of pure and GP_CeO2-type samples were investigated by X-ray powder diffraction (XRPD), Fourier transform infrared (FTIR), BET, differential thermal and thermogravimetric analysis (DTA/TGA), scanning electron microscopy (FE-SEM), energy dispersive spectrometer (EDS), and method complex impedance (EIS). XRPD and matrix-assisted laser desorption and ionization time-of-flight (MALDI-TOF) analysis confirmed the formation of solid phase CeO2. The BET, DTA/TGA, FE-SEM, and EDS results indicated that particles of CeO2 were stabile interconnected and form a continuous conductive path, which was confirmed by the EIS method. The highest conductivity of 1.86 × 10−2 Ω−1 cm−1 was obtained for the sample GP_CeO2_MGNP at 700 °C. The corresponding value of activation energy for conductivity was 0.26 eV in the temperature range 500−700 °C.
机译:作为在生命科学中应用的材料,合成新的复合材料,地质聚合物/ CEO2(GP_CEO2)作为潜在的低成本固体电解质,用于在中间温度(IT-SOFC)中操作的固体氧化物燃料电池中。在CeO 2粉末(x = 10%)存在下,从碱活化的甲醇蛋白(煅烧粘土)获得新材料(x = 10%)。除了商业CEO2粉末之外,作为二氧化铈的来源,还使用了两种不同合成的CEO2粉末:通过改性甘氨酸硝酸盐(MGNP)合成的CeO 2和室温(SPRT)在室温下进行自我繁殖反应。通过X射线粉末衍射(XRPD),傅里叶变换红外(FTIR),BET,差分热和热重分析(DTA / TGA),扫描电子显微镜(DTA / TGA)研究了纯和GP_CEO2型样品的结构,形态和电性能(Fe-SEM),能量分散光谱仪(EDS)和方法复杂阻抗(EIS)。 XRPD和基质辅助激光解吸和电离飞行时间(MALDI-TOF)分析证实了固态CEO2的形成。 BET,DTA / TGA,FE-SEM和EDS结果表明CEO2的颗粒是稳定的互连并形成连续导电路径,其通过EIS方法确认。获得1.86×10-2Ω-1cm-1的最高导电率为700℃的样品GP_CEO2_MGNP获得。用于电导率的激活能量的相应值在500-700℃的温度范围内为0.26eV。

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