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Exploring the effects of divalent alkaline earth metals (Mg, Ca, Sr, Ba) doped Nd2Ce2O7 electrolyte for proton-conducting solid oxide fuel cells

机译:探索二价碱土金属(Mg,Ca,Sr,Ba)掺杂Nd2CE2O7电解质对质子传导固体氧化物燃料电池的影响

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摘要

In this study, alkaline earth metals (Mg, Ca, Sr, Ba) doped Nd2Ce2O7 powders are synthesized by the gel autocombustion method. The effects of alkaline earth metals doped Nd2Ce2O7 on the phase structure, chemical stability, microstructure, and electrical properties are evaluated by the X-ray diffraction, scanning electron microscopy, Raman spectroscopy and electrochemical testing. All electrolytes reveal a cubic fluorite structure with an Fm-3m space group and remain excellent chemical stability at different atmospheres. The grain size and density of ceramics increase significantly, and a large number of oxygen vacancies are created after alkaline earth metals incorporated into Nd2Ce2O7. Generally, the total conductivity is associated with the number of oxygen vacancies and microstructure of ceramics. The electrolyte of Nd(1.85)Mg(0.15)Ce2(O)7-delta exhibits the highest electrical conductivity of 0.923 x 10(-2) S cm(-1 )and 1.542 x 10(-2) S cm(-1) in dry air and wet 5% H-2-Ar atmosphere at 700 degrees C, respectively. Additionally, with alkaline earth metals doped Nd2Ce2O7 as electrolytes, the proton-conducting single cells have a better open circuit voltage and peak power density. The single cell based on Nd(1.85)Mg(0.15)Ce2(O)7-delta electrolyte can reach 0.890 V and 483 mW cm(-2) at 700 degrees C. This was observed to stay constant without extreme degradation after short-term testing.
机译:在该研究中,通过凝胶自动掩模方法合成碱土金属(Mg,Ca,Sr,Ba)掺杂Nd2O2O7粉末。通过X射线衍射,扫描电子显微镜,拉曼光谱和电化学测试评估碱土金属掺杂ND2CE2O7对相结构,化学稳定性,微观结构和电性能的影响。所有电解质揭示了具有FM-3M空间组的立方萤石结构,在不同的环境下保持优异的化学稳定性。陶瓷的晶粒尺寸和密度显着增加,并且在掺入ND2CE2O7中的碱土金属后产生大量氧空位。通常,总电导率与陶瓷的氧空位数和微观结构相关联。 Nd(1.85)mg(0.15)Ce2(O)7-δ的电解质表现出0.923×10(-2)厘米(-1)和1.542×10(-2)Cm(-1)的最高电导率)在干燥空气中,分别在700℃下润湿5%H-2-AR气氛。另外,对于作为电解质的ND2CE2O7掺杂碱土金属,质子传导单电池具有更好的开路电压和峰值功率密度。基于Nd(1.85)Mg(0.15)的单电池CE2(O)7-Δ电解质可以在700℃下达到0.890V和483mWcm(-2)。这被观察到在短时间内没有极端降级的情况下保持恒定术语测试。

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