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首页> 外文期刊>Journal of power sources >Enhanced CO2 stability of oxyanion doped Ba2In2O5 systems co-doped with La, Zr
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Enhanced CO2 stability of oxyanion doped Ba2In2O5 systems co-doped with La, Zr

机译:与La,Zr共掺杂的掺氧阴离子Ba2In2O5系统的增强的CO2稳定性

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摘要

In the solid oxide fuel cell (SOFC) field, proton conducting perovskite electrolytes offer many potential benefits. However, an issue with these electrolytes is their stability at elevated temperatures in the presence of CO2. Recently we have reported enhanced oxide ion/proton conductivity in oxyanion (silicate, phosphate) doped Ba2In2O5, and in this paper we extend this work to examine the stability at elevated temperatures towards CO2. The results show improved CO2 stability compared to the undoped system, and moreover this can be further improved by co-doping on either the Ba site with La, or the In site with Zr. While this co-doping strategy does reduce the conductivity slightly, the greatly improved CO2 stability would suggest there is technological potential for these co-doped samples.
机译:在固体氧化物燃料电池(SOFC)领域,质子传导钙钛矿电解质具有许多潜在的好处。然而,这些电解质的问题是它们在存在CO 2的高温下的稳定性。最近,我们报道了在氧阴离子(硅酸盐,磷酸盐)掺杂的Ba2In2O5中增强的氧化物离子/质子电导率,并且在本文中,我们将这项工作扩展到检查在高温下对CO2的稳定性。结果表明,与未掺杂的系统相比,CO2的稳定性得到了改善,此外,可以通过在Ba位置与La或在In位置与Zr共掺杂来进一步改善CO2的稳定性。尽管这种共掺杂策略确实会稍微降低电导率,但是大大提高的CO2稳定性表明这些共掺杂样品具有技术潜力。

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