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Stability of metal oxides against Li/Na carbonates in composite electrolytes

机译:金属氧化物对复合电解质中碳酸锂/锂的稳定性

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摘要

Solid oxide-alkaline carbonate (Li2CO3 : Na2CO3, 1 : 1 molar ratio) composite electrolytes were prepared using different solid oxide matrices (TiO2, HfO2, Yb2O3, Y2O3, Dy2O3, Gd2O3 and La2O3), to cover a wide range of ceramic chemical characteristics. The chemical and microstructural stability of these oxides with the mixed carbonates were studied by powder X-ray diffraction, scanning electron microscopy, infrared and laser Raman spectroscopic techniques after reacting them at 690 degrees C for 1 h in air. The electrical performance of selected composites was evaluated using impedance spectroscopy, in air. Amongst the oxides hereby tested, TiO2 is found to be the most unstable in contact with the molten carbonates whereas Yb2O3 is quite stable. The corresponding composites have ionic conductivities (3.3 x 10(-1) S cm(-1) at 580 degrees C, in air) close to those reported for state-of-the-art ceria-based composite electrolytes. A draft equivalent circuit model underlines the transport in the carbonate phase and across the carbonate/oxide interfaces as the dominant contributions to the total conductivity of these composites. Yb2O3 + Li2CO3 : Na2CO3 composites show chemical stability at operating temperatures in the order of 690 degrees C, standing as a potential candidate for intermediate temperature applications.
机译:使用不同的固体氧化物基质(TiO2,HfO2,Yb2O3,Y2O3,Dy2O3,Gd2O3和La2O3)制备了固体氧化物-碱式碳酸盐(Li2CO3:Na2CO3,摩尔比为1:1)复合电解质。 。在空气中将其在690摄氏度下反应1小时后,通过粉末X射线衍射,扫描电子显微镜,红外和激光拉曼光谱技术研究了这些氧化物与混合碳酸盐的化学和微观结构稳定性。所选复合材料的电性能在空气中使用阻抗谱进行了评估。在由此测试的氧化物中,发现TiO2与熔融碳酸盐接触时最不稳定,而Yb2O3非常稳定。相应的复合材料的离子电导率(在空气中580摄氏度下在空气中的电导率(3.3 x 10(-1)S cm(-1))接近于最新的基于二氧化铈的复合电解质的电导率。拟定的等效电路模型强调了碳酸盐相中以及跨碳酸盐/氧化物界面的传输是这些复合材料总电导率的主要贡献。 Yb2O3 + Li2CO3:Na2CO3复合材料在约690摄氏度的工作温度下显示出化学稳定性,是中温应用的潜在候选者。

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