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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >High temperature X-ray diffraction and thermo-gravimetrical analysis of the cubic perovskite Ba0.5Sr0.5Co0.8Fe0.2O3-delta under different atmospheres
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High temperature X-ray diffraction and thermo-gravimetrical analysis of the cubic perovskite Ba0.5Sr0.5Co0.8Fe0.2O3-delta under different atmospheres

机译:立方钙钛矿Ba0.5Sr0.5Co0.8Fe0.2O3-δ在不同气氛下的高温X射线衍射和热重分析

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Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF) with the cubic perovskite structure is known to be metastable at low temperature under an oxidizing atmosphere. Here, the thermal and chemical expansion of BSCF were studied by in situ high temperature powder X-ray diffraction and thermo-gravimetrical analysis (TGA) in partial pressure of oxygen ranging from an inert atmosphere (similar to 10(-4) bar) to 10 bar O-2. The BSCF powder, heat treated at 1000 degrees C and quenched to ambient temperature prior to the analysis, was shown to oxidize under an oxidizing atmosphere before thermal reduction took place. With decreasing partial pressure of oxygen the initial oxidation was suppressed and only reduction of Co/Fe and loss of oxygen were observed under an inert atmosphere. The thermal expansion of BSCF under different atmospheres was determined from the thermal evolution of the cubic unit cell parameter, demonstrating that the thermal expansion of BSCF depends on the atmosphere. Chemical expansion of BSCF was also estimated based on the diffraction data and thermo-gravimetrical analysis. A hexagonal perovskite phase, coexisting with the cubic BSCF polymorph, was observed to be formed above 600 degrees C during heating. The phase separation leading to the formation of the hexagonal polymorph was driven by oxidation, and the unit cell of the cubic BSCF was shown to decrease with increasing amounts of the hexagonal phase. The hexagonal phase disappeared upon further heating, accompanied with an expansion of the unit cell of the cubic BSCF.
机译:已知具有立方钙钛矿结构的Ba0.5Sr0.5Co0.8Fe0.2O3-δ(BSCF)在低温下于氧化气氛下易稳定。在这里,通过原位高温粉末X射线衍射和热重分析(TGA)在惰性气氛(类似于10(-4)bar)至10巴O-2。在分析之前,在1000摄氏度下热处理并淬火至环境温度的BSCF粉末显示在氧化气氛下会发生氧化,然后再进行热还原。随着氧气分压的降低,初始氧化被抑制,并且在惰性气氛下仅观察到Co / Fe的还原和氧气的损失。根据立方晶胞参数的热演化确定了不同气氛下BSCF的热膨胀,表明BSCF的热膨胀取决于气氛。还基于衍射数据和热重分析来估计BSCF的化学膨胀。观察到在加热期间在600摄氏度以上会形成与立方BSCF多晶型共存的六方钙钛矿相。导致形成六角形多晶型物的相分离是由氧化驱动的,并且立方BSCF的晶胞显示出随着六角形相量的增加而减少。随着进一步加热,六方相消失,伴随着立方BSCF的晶胞膨胀。

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