Abstract <![CDATA[Temporal stability of oxygen-ion conductivity in 1Nb <ce:inf loc='post'>2</ce:inf>O <ce:inf loc='post'>5</ce:inf>-10Sc <ce:inf loc='post'>2</ce:inf>O <ce:inf loc='post'>3</ce:inf>-89ZrO <ce:inf loc='post'>2</ce:inf>]]>
【24h】

2O 5-10Sc 2O 3-89ZrO 2]]>

机译:“10SC 2 O 3 -89zro 2 ]]>

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AbstractA slight Nb2O5co-doping in 11Sc2O3-89ZrO2was earlier reported to stabilize the high-symmetry cubic phase completely and enhances the conductivity significantly. The present work looked at the temporal stability of conductivity in 1Nb2O5-10Sc2O3-89ZrO2(1Nb10ScSZ) for the electrolyte application in solid oxide fuel cells.In-situconductivity measurement was done using impedance spectroscopy at 650°C in the air for 2000h. A substantial conductivity loss (29%) was observed in the first 1000h. Following which, conductivity remained relatively stable for the next 1000h. Impedance analysis showed that the main contribution to the conductivity degradation was from grain conductivity. Phase analysis performed using XRD, TEM and Raman spectroscopy revealed that both the unaged and aged 1Nb10ScSZ samples consisted of metastable t″-phase. However, the extent of tetragonality was found to increase after ageing. The formation of low-symmetry phase was suggested to be the reason for the grain conductivity loss in 1Nb10ScSZ.]]>
机译:摘要在11Sc23“>2之前曾被报道完全稳定了高对称性立方相,并显著提高了电导率。本研究考察了1Nb2O5-10Sc2O3-89ZrO2用于固体氧化物燃料电池中的电解质应用原位使用阻抗谱在650°C的空气中进行2000小时的电导率测量。在前1000小时内,观察到大量电导率损失(29%)。随后,电导率在接下来的1000小时内保持相对稳定。阻抗分析表明,颗粒电导率是导致电导率降低的主要原因。利用XRD、TEM和拉曼光谱进行的相分析表明,未老化和老化的1Nb10ScSZ样品均由亚稳t〃相组成。然而,老化后发现四方性的程度增加。低对称相的形成可能是1Nb10ScSZ晶粒电导率损失的原因]>

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