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首页> 外文期刊>Journal of thermal analysis and calorimetry >Synthesis and characterization of LaFeO3 powders prepared by a mixed mechanical/thermal processing route
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Synthesis and characterization of LaFeO3 powders prepared by a mixed mechanical/thermal processing route

机译:用混合机械/热处理路线制备LafeO3粉末的合成与表征

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摘要

Lanthanum ferrite, LaFeO3 (LF), has raised considerable interest since it can be used in many applications such as solid-oxide fuel cell electrode, sensor material (H2O and ethanol) and catalyst. Since the conventional ceramic route of synthesis has some disadvantages, mainly related to an exaggerated grain growth, LF has been prepared by different methods including combustion synthesis, sol-gel, hydrothermal processes, polymerizable complex method and mechanochemistry. As concerns this last method, a problem occurs due to the moisture sensitivity of La2O(3). To overcome the problem, we used lanthanum acetate sesquihydrate [La(CH3COO)(3)center dot 1.5H(2)O] and iron (II) oxalate dehydrate [FeC2O4 center dot 2H(2)O] as precursors. The mechanism of the solid-state reactions in the mixtures has been studied by TG-DSC and XRPD. Synthesis of LaFeO3 has been realized by annealing the mechanically activated mixtures for 3 h at temperatures between 500 and 800 A degrees C. While LF prepared at 500 A degrees C T 600 A degrees C has an amorphous character, LF obtained at T = 600 A degrees C is free from carbonaceous impurities as it is shown by FT-IR and TG measurements. The specific area of the LaFeO3 powders obtained starting from the mechanically activated mixture is decreasing by increasing the annealing temperature. On the contrary, the annealing on samples of physical mixture at temperatures up to 800 A degrees C only yields a mixture of LaFeO3, La2O3 and Fe2O3.
机译:铁酸镧,铁酸镧(LF),已经提出了相当大的兴趣,因为它可以在许多应用中,例如固体氧化物燃料电池用电极,传感器材料(H 2 O和乙醇)和催化剂一起使用。由于合成的常规陶瓷路线有一些缺点,主要涉及一种夸张的晶粒生长,LF已准备通过不同的方法包括燃烧合成法,溶胶 - 凝胶,水热方法,可聚合的复合物的方法和机械力。由于涉及该最后方法中,发生由于La2O(3)的湿度敏感性的问题。为了克服这一问题,我们使用乙酸镧倍半水合物[La(上CH 3 COO)(3)中心的点1.5H(2)O]和铁(II),草酸脱水[FeC2O4中心点2H(2)O]作为前体。在混合物中的固态反应的机理,研究了TG-DSC和XRPD。铁酸镧的合成已经通过在500个800中的摄氏度之间的温度下退火3小时的机械活化的混合物实现虽然LF在500制备a度℃下t& 600甲摄氏度具有非晶字符,LF在T&GT获得; = 600甲摄氏度是由碳质不含杂质​​,因为它是通过FT-IR和TG测量中所示。从机械活化的混合物开始得到的载LaFeO 3粉末的比表面积是通过增加退火温度降低。与此相反,在温度上的物理混合物的样品退火至800甲摄氏度仅产生铁酸镧,镧和Fe2O3的混合物。

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