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Microwave-assisted hydrothermal synthesis of NiO-Ce_(1-X)Eu_XO_(2-δ) powders for fuel cell catalytic anodes

机译:微波辅助水热合成燃料电池催化阳极用NiO-Ce_(1-X)Eu_XO_(2-δ)粉末

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CeO_2-based materials doped with rare earth (TR ~(+3)) can be used as alternative to traditional NiO-YSZ anodes in solid oxide fuel cells as they have higher ionic conductivity and lower ohmic losses compared to YSZ. Moreover, they allow fuel cell operation at lower temperatures (500-800°C). In the anode composition, the concentration of NiO acting as catalyst in YSZ provides high electrical conductivity and high electrochemical activity of reactions, promoting internal reform in the cell. In this work, NiO - Ce_(1-x)Eu_xO_(2-δ) compounds (x = 0.1, 0.2 and 0.3) have been synthesized by microwave-assisted hydrothermal method. The materials were characterized by TG, XRD, TPR and SEM-FEG techniques. The refinement of data obtained by X-ray diffraction showed the presence of ceria doped with europium crystallized in a cubic phase with fluorite structure, in addition to the presence of NiO. The microwave-assisted hydrothermal method showed significant reduction in the average particle size and good mass control of phase compositions compared to other chemical synthesis techniques.
机译:掺杂有稀土(TR〜(+3))的CeO_2基材料可替代固体氧化物燃料电池中的传统NiO-YSZ阳极,因为与YSZ相比,它们具有更高的离子电导率和更低的欧姆损耗。而且,它们允许燃料电池在较低的温度(500-800°C)下运行。在阳极组合物中,在YSZ中充当催化剂的NiO的浓度提供了高电导率和高反应电化学活性,从而促进了电池内部的重整。在这项工作中,通过微波辅助水热法合成了NiO-Ce_(1-x)Eu_xO_(2-δ)化合物(x = 0.1、0.2和0.3)。通过TG,XRD,TPR和SEM-FEG技术对材料进行了表征。通过X射线衍射获得的数据的细化表明,除了NiO的存在之外,还存在掺杂有在具有萤石结构的立方相中结晶的euro的二氧化铈。与其他化学合成技术相比,微波辅助水热法显示出平均粒径的显着降低和相组成的良好质量控制。

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