首页> 外文期刊>Journal of the European Ceramic Society >Co and Fe co-doping influence on functional properties of SrTiO 3 for use as oxygen transport membranes
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Co and Fe co-doping influence on functional properties of SrTiO 3 for use as oxygen transport membranes

机译:CO和Fe共掺杂对SRTIO功能性的影响 3 用作氧气输送膜

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摘要

Perovskite-structured powders of SrTi1-xCoxO3-δ(STC-x) with nominal stoichiometry of x?=?0–0.75 as well as SrTi0.75Co0.25-yFeyO3-δ(STCF-y) where y?=?0–0.25 were synthesized using the Pechini method. Thermal/chemical expansion behaviour, total electrical conductivities, and oxygen permeation rates were investigated. The substitution of Ti with Co leads to an increase in both electronic and ionic conductivities and, therefore, oxygen permeability. Thermal and chemical expansions also increase slightly. The optimum Co content was found to be 25–35% due to the trade-off between phase stability and permeability. The oxygen permeation rate of STC35 is comparable to that of state-of-the-art (La,Sr)(Co,Fe)O3-δ, whereas the expansion coefficients are lower. Co-doping in STCF-y did not produce any significant differences in oxygen permeability at both high temperature and sample thickness (1.0?mm), i.e. in a solid-state diffusion-limited regime. At lower temperatures (<800?°C), STC25 exhibits higher permeability than STF25 due to the higher catalytic activity of Co compared to Fe.
机译:SRTI1-XcoxO3-δ(STC-X)的钙钛矿结构粉末,标称化学计量X?= 0-0.75以及SRTI0.75Co0.25-YFeyo3-Δ(STCF-Y),其中Y?= 0-使用Pechini方法合成0.25。研究了热/化学膨胀行为,总电导率和氧气渗透率。用CO取代Ti导致电子和离子电导率的增加,因此,透氧渗透性。热和化学膨胀也略有增加。由于相位稳定性和渗透性之间的折衷,发现最佳CO含量为25-35%。 STC35的氧渗透速率与现有技术(LA,SR)(CO,Fe)O3-Δ相媲美,而膨胀系数较低。在STCF-Y中的共掺杂在高温和样品厚度(1.0Ωmm)中没有产生任何显着差异,即在固态扩散限制状态下。在较低温度(<800Ω°C)下,STC25由于与Fe相比,由于Co的催化活性较高,STC25表现出比STF25更高的渗透性。

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