论文标题
烧结条件对6scandia 1ceria共掺杂氧化锆(6SC1CEZR)的微结构和电化学特性的影响
Effect of Sintering Conditions on the Microstructure and Electrochemical Properties of 6Scandia 1Ceria co-doped Zirconia (6Sc1CeZr)
论文作者
论文摘要
目前的工作研究烧结条件对6 mol%SC2O3的致密性行为,微结构和电化学性能的影响,1 mol%CEO2共掺杂的ZRO2(6SC1CEZR)对固态电解质应用。通过衍射,显微镜和拉曼和电化学阻抗光谱检查,检查了不同温度在不同温度下的物理特性和电化学性能,在不同温度下烧结了6小时。使用与Arrhenius型电导率方程的线性拟合计算氧离子的活化能和指数的电导率。我们观察到,在1500°C下烧结6小时的样品显示四方相,最高相对密度和最高总电导率的C/A轴向比率较低。较高的总电导率是通过形成较高的对称四方相的形成,同时存在立方和四方相的同时存在(具有较高的对称性),并由岩性的存在部分替代了锆离子离子位点的支持。
The current work studies the effect of sintering conditions on the densification behavior, microstructure, and electrochemical performance of 6 mol% Sc2O3, 1 mol% CeO2 co-doped ZrO2 (6Sc1CeZr) for solid-state electrolyte applications. The specimen's physical properties and electrochemical performance sintered at different temperatures ranging from 1000 °C to 1700 °C for 6 hours are examined through diffraction, microscopy, and Raman and electrochemical impedance spectroscopy. The activation energy and pre-exponential conductivity factor of the oxygen ions are calculated using a linear fit to the Arrhenius-type conductivity equation. We observe that samples sintered at 1500 °C for 6h show a lower c/a axial ratio for the tetragonal phase, highest relative density, and highest total conductivity among all samples investigated. The higher total conductivity is explained by the formation of a higher symmetric tetragonal phase and the simultaneous existence of the cubic and tetragonal phases (with higher symmetry), supported by the presence of the cerium ions partially replaced zirconium ions' sites.