首页> 外文期刊>International Journal of Quantum Chemistry >Optimization of mixed conducting properties of Y2O3-ZrO2-TiO2 and Sc2O3-Y2O3-ZrO2-TiO2 solid solutions as potential SOFC anode materials
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Optimization of mixed conducting properties of Y2O3-ZrO2-TiO2 and Sc2O3-Y2O3-ZrO2-TiO2 solid solutions as potential SOFC anode materials

机译:作为潜在SOFC阳极材料的Y2O3-ZrO2-TiO2和Sc2O3-Y2O3-ZrO2-TiO2固溶体混合导电性能的优化

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摘要

The mixed conductor Y0.2Zr0.62Ti0.18O1.9 is a promising candidate as an SOFC anode material. In order to further improve the ionic conductivity, the conductivity of system Sc2O3-Y2O3-ZrO2-TiO2 was investigated when Y was substituted by Sc. Materials with single cubic fluorite structure were prepared by solid state reaction. The ionic and electronic conductivities were measured by four-terminal dc method in 5% H-2 and ac impedance spectroscopy in air and 5% H-2 respectively. It was found that TiO2 may dissolve to about 18 mol% in the ternary systems Y2O3-ZrO2-TiO2 and Sc2O3ZrO2-TiO2, and 20 mol% in the quaternary system Sc2O3-Y2O3-ZrO2-TiO2. It was also observed that the ionic conductivity is related to the oxygen vacancy concentration and the size of doped ions, and electronic conductivity to the lattice parameter, the sublattice ordering, and the degree of Ti substitution. In addition, both the ionic and electronic conductivities have been improved by the introduction of scandium into the Y2O3-ZrO2-TiO2 system. The highest ionic conductivity (1.0 X 10(-2) S/cm at 900degreesC) and electronic conductivity (0.14S/cm at 900degreesC) were observed for Sc-0.2Zr0.62Ti0.18O1.9 and Sc0.1Y0.1Zr0.6Ti0.2O1.9, respectively. Considering the required levels of both ionic and electronic conductivities for ideal SOFC anode materials, Sc0.15Y0.05Zr0.62Ti0.18O1.9 is a promising candidate with ionic and electronic conductivities 7.8 X 10(-3) and 1.4 x 10(-1) S/cm, respectively, at 900degreesC. (C) 2002 Elsevier Science (USA). [References: 20]
机译:混合导体Y0.2Zr0.62Ti0.18O1.9是有前途的候选材料,可用作SOFC阳极材料。为了进一步提高离子电导率,研究了当Y被Sc取代时,系统Sc2O3-Y2O3-ZrO2-TiO2的电导率。通过固相反应制备具有单立方萤石结构的材料。离子和电子电导率分别通过5%H-2中的四端dc法和空气和5%H-2中的交流阻抗谱进行测量。发现三元体系Y 2 O 3 -ZrO 2 -TiO 2和Sc 2 O 3 ZrO 2 -TiO 2中TiO 2可溶解至约18mol%,而在四元体系Sc 2 O 3 -Y 2 O 3 -ZrO 2 -TiO 2中溶解至约20mol%。还观察到离子电导率与氧空位浓度和掺杂离子的大小有关,而电子电导率与晶格参数,亚晶格有序性和Ti取代度有关。另外,通过将dium引入Y 2 O 3 -ZrO 2 -TiO 2系统中,提高了离子电导率。 Sc-0.2Zr0.62Ti0.18O1.9和Sc0.1Y0.1Zr0.6Ti0的最高离子电导率(900°C为1.0 X 10(-2)S / cm)和电子电导率(900°C为0.14S / cm) .2O1.9。考虑到理想SOFC阳极材料所需的离子电导率和电子电导率水平,Sc0.15Y0.05​​Zr0.62Ti0.18O1.9有望成为具有离子电导率7.8 X 10(-3)和1.4 x 10(-1)的候选材料)S / cm,分别在900℃下。 (C)2002 Elsevier Science(美国)。 [参考:20]

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