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Electrical properties and oxygen diffusion in yttria-stabilised zirconia (YSZ)-La0.8Sr0.2MnO3 +/-delta (LSM) composites

机译:氧化钇稳定的氧化锆(YSZ)-La0.8Sr0.2MnO3 +/-δ(LSM)复合材料的电性能和氧扩散

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摘要

Dense YSZ-LSM composites were fabricated for application as an oxygen separation membrane. A density about 95% was achieved for a sintering temperature of 1350 degrees C; however, an insulating La2Zr2O7 phase was formed during this high-temperature sintering. The percolation threshold was identified at about 30 wt.% (or 28 vol.%) of LSM. Isotopic exchange depth profiling (IEPD)/secondary ion mass spectrometry (SIMS) method was used to investigate the oxygen diffusion and surface exchange properties of the composites. The two composites, YSZ30 wt.%LSM and YSZ-40 wt.%LSM (or 38 vol.% LSM), with a 3-D interconnected network, had higher oxygen diffusivity than the pure LSM, but slightly lower than the parent YSZ material. The oxygen surface exchange coefficient of the YSZ was significantly enhanced by the introduction of the electronic conductor LSM, which confirmed the supposition that the availability of electrons limits the oxygen surface exchange reaction on the pure YSZ materials. (c) 2004 Elsevier B.V. All rights reserved.
机译:制备了致密的YSZ-LSM复合材料,用作氧气分离膜。在1350摄氏度的烧结温度下达到约95%的密度;然而,在该高温烧结过程中形成了绝缘的La2Zr2O7相。渗滤阈值确定为LSM的约30 wt。%(或28 vol。%)。同位素交换深度分析(IEPD)/二次离子质谱(SIMS)方法用于研究复合材料的氧扩散和表面交换性能。具有3-D互连网络的两种复合材料YSZ30 wt。%LSM和YSZ-40 wt。%LSM(或38 vol。%LSM)具有比纯LSM高的氧扩散率,但略低于母体YSZ材料。通过引入电子导体LSM可以显着提高YSZ的氧表面交换系数,这证实了这样的假设,即电子的可利用性限制了纯YSZ材料上的氧表面交换反应。 (c)2004 Elsevier B.V.保留所有权利。

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