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Effect of La3+ and Pr3+ co-doping on structural, thermal and electrical properties of ceria ceramics as solid electrolytes for IT-SOFC applications

机译:LA3 +和PR3 +共掺杂对Ceria陶瓷的结构,热和电性能作为IT-SOFC应用的固体电解质

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In the present investigation, the effect of La3+ and Pr3+ co-doping on structural, thermal and electrical properties of ceria ceramics useful as solid electrolytes in intermediate temperature solid oxide fuel cells (IT-SOFCs) has been studied. The co-doped ceria Ce-0.8 Pr0.2-xLaxO2-delta samples have been prepared successfully via sol-gel auto-combustion synthesis. The high dense ceramic samples have been achieved by carry out an optimized conventional sintering at 1300 degrees C for 4 h. The powder X-ray diffraction analysis of all the co-doped ceria ceramics revealed the single phase with cubic-fluorite structure formation. Crystallographic information has been carried out from the powder X-ray diffraction and Rietveld refinement analysis. The scanning electron microscope and energy dispersive spectroscopy analysis revealed the smaller grain size with high density in microstructure and stoichiometric elemental confirmations. Raman spectra of prepared ceramics revealed the information of phase and oxygen vacancy formation in the entire compositions. The dilatometric studies of prepared co-doped ceria ceramics revealed the moderate coefficients of thermal expansion. The electrical parameters such as total conductivities and activation energies have been studied with the help of impedance spectroscopy. Among all these co-doped ceria ceramic samples, Ce0.8Pr0.10La0.10 O2-delta found to exhibit the highest value of total ionic conductivity with minimum activation energy and this makes it could be a promising electrolyte material for IT-SOFC applications.
机译:在本研究中,研究了La3 +和Pr3 +共掺杂对二氧化铈陶瓷的结构,热和电性能的影响,其可用作中间温度固体氧化物燃料电池(IT-SOFCS)的固体电解质。通过溶胶 - 凝胶自燃合成成功制备了共掺杂的CERIA CE-0.8PR0.2-XLAXO2-DELTA样品。通过在1300℃下进行优化的常规烧结来实现高密度陶瓷样品。所有共掺杂的二氧化碳陶瓷的粉末X射线衍射分析显示单相,具有立方氟结构形成。已经从粉末X射线衍射和RIETVELD细化分析中进行了晶体信息。扫描电子显微镜和能量色散光谱分析显示,微观结构和化学计量元素确认的高密度粒径较小。制备陶瓷的拉曼光谱揭示了整个组合物中相和氧空位的信息。制备的共掺杂二氧化铈陶瓷的膨胀性研究显示了中等热膨胀系数。在阻抗光谱的帮助下已经研究了诸如总导电性和活化能量的电参数。在所有这些共掺杂的二氧化铈陶瓷样品中,CE0.8PR0.10.10.10 o2-delta发现,具有最小活化能量的总离子导电性的最高值,这使得它可以是IT-SOFC应用的有希望的电解质材料。

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