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首页> 外文期刊>Journal of the European Ceramic Society >Yttrium doping of Ba0.5Sr0.5Co0.8Fe0.2O3-delta part I: Influence on oxygen permeation, electrical properties, reductive stability, and lattice parameters
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Yttrium doping of Ba0.5Sr0.5Co0.8Fe0.2O3-delta part I: Influence on oxygen permeation, electrical properties, reductive stability, and lattice parameters

机译:钇掺杂Ba0.5CO0.5CO0.8FE0.8FE0.2O3-DELTA第一部分:对氧气渗透,电学性质,还原稳定性和晶格参数的影响

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摘要

Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF) exhibits a very high oxygen permeability in its cubic perovskite phase, making it a promising candidate for high-temperature energy-related applications such as oxygen-transport membranes. It suffers, however, from a pronounced phase instability at application-relevant temperatures below 840 degrees C which is presumed to result from a valence change of B-site cobalt. In an attempt to stabilize the cubic BSCF phase, monovalent Y3+ was doped in small concentrations (1-10 mol-% yttrium) onto its B-site. The influence of this doping on the physico-chemical properties (electrical conductivity, reductive stability, lattice constant), on the sintering behavior, and on the oxygen permeation of BSCF has been systematically investigated. Despite a slightly adverse effect to permeability (decrease in oxygen permeation by about 20-30%), a doping concentration of 10 mol-% Y is found to completely suppress secondary-phase formation and, hence, stabilize the cubic BSCF system at 800 degrees C. These findings are extremely promising with regard to a long-term operation of BSCF in atmospheres free of acidic impurity gases.
机译:BA0.5SR0.5CO0.8FE0.2O3-DELTA(BSCF)在其立方钙钛矿相中表现出非常高的透氧性,使其成为高温能量相关应用的有希望的氧化膜。然而,它受到在低于840℃的施用相关温度下的明显相稳定性,这被推测由B-位点钴的价变化导致。在试图稳定立方BSCF相中,将单价Y3 +以小浓度(1-10mol%的钇)掺杂到其B位点上。系统地研究了这种掺杂对物理化学性质(导电性,还原稳定性,晶格常数)的影响,并系统地研究了BSCF的氧气渗透。尽管对渗透性略有不利影响(氧气渗透约为20-30%),但发现10mol%Y的掺杂浓度完全抑制二次相形成,因此,在800度下稳定立方BSCF系统C.这些发现在没有酸性杂质气体的大气中BSCF的长期操作非常有前途。

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