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首页> 外文期刊>Solid state ionics >Structural and transport properties of lanthanum tungstate with high La/W ratio: Suitability for proton-conducting solid oxide fuel cells operating at intermediate temperature
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Structural and transport properties of lanthanum tungstate with high La/W ratio: Suitability for proton-conducting solid oxide fuel cells operating at intermediate temperature

机译:具有高LA / W的镧钨酸盐的结构和运输性能:在中间温度下运行的质子导电固体氧化物燃料电池的适用性

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摘要

Systematic characterization of lanthanum tungstate (LWO) with a high La/W ratio was conducted to evaluate its suitability as a proton-conducting solid electrolyte for fuel cells operating at intermediate temperature. In this study, the crystal structure, ionic and electronic transport properties of LWO with a high La/W ratio (La/W = 6.7: LWO67), which had high proton conductivity, were investigated. Rietveld analysis using synchrotron powder X-ray diffraction confirmed the single-phase formation of LWO67 having a cubic crystal structure with the Fm3ni space group. The coefficient of thermal expansion of LWO67 was also evaluated from Rietveld analysis at high temperatures. Thermogravimetric analysis indicated a good chemical stability of LWO67 under wet CO2 conditions. The observed electrical properties indicated that the proton conductivity was dominant under wet conditions below 873 K. The dependence of the electrical conductivity on oxygen partial pressure suggested that the electron and hole conductivities were suppressed sufficiently below 973 K. Based on the observed transport properties, the superiority of LWO67 applied to a proton-conducting solid electrolyte fuel cells (p-ITFCs) was also discussed. The optimized electrolyte thickness of LWO67 was several tens of micrometers, which is more suitable than perovskite-type proton conductors such as BaZrO3 and BaCeO3 for electrode-supported fuel cells, when they are compared in terms of power generation efficiency.
机译:进行了高LA / W比的镧钨酸酯(LWO)的系统表征,以评估其作为在中间温度下操作的燃料电池的质子传导固体电解质的适用性。在该研究中,研究了具有高LA / W比(LA / W = 6.7:LWO67)的LWO的晶体结构,离子和电子传输性质,其具有高质子电导率。使用同步粉末X射线衍射的RIETVELD分析证实了具有与FM3NI空间组具有立方晶体结构的LWO67的单相形成。 LWO67的热膨胀系数也从高温下的RIETVELD分析评估。热重分析表明LWO67在湿CO2条件下的良好化学稳定性。观察到的电性质表明,在低于873k的潮湿条件下,质子电导率在潮湿条件下显着。导电性对氧分压的依赖性表明,基于观察到的运输特性,抑制了电子和空穴导电性。还讨论了应用于质子导电固体电解质燃料电池(P-ITFC)的LWO67的优越性。 LWO67的优化电解质厚度为几十微米,比在发电效率方面比较时,比钙钛矿型质子导体(如BAZRO3和BACEO3)更适合于电极负载的燃料电池。

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