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Synthesis of monophasic Ce0.5Zr0.5O2 solid solution by microwave-induced combustion method

机译:微波诱导燃烧法合成单相Ce0.5Zr0.5O2固溶体

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Nanocrystalline monophasic Ce0.5Zr0.5O2 solid solution (1:1 molar ratio) has been synthesized by microwave-induced combustion method in a modified domestic microwave oven (2.45 GHz, 700 W) in approximately 40 min from cerium nitrate and zirconium nitrate precursors using urea as ignition fuel. For the purpose of better comparison, a Ce (x) Zr1-x O-2 solid solution (1:1 molar ratio) was also synthesized by a conventional co-precipitation method from nitrate precursors and subjected to different calcination temperatures. The synthesized powders of both methods were characterized by means of X-ray powder diffraction, thermogravimetry/differential thermal analysis, scanning electron microscopy, and BET surface area techniques. Oxygen storage capacity (OSC) measurements were performed to understand the usefulness of these materials for various applications. The characterization results reveal that the sample obtained by microwave-induced combustion-synthesis route exhibits homogeneous monophasic Ce0.5Zr0.5O2 solid solution whereas the co-precipitated sample displays compositional heterogeneity. The OSC measurements reveal that the materials synthesized by both methods exhibit comparable oxygen vacancy content (delta).
机译:纳米晶单相Ce0.5Zr0.5O2固溶体(摩尔比为1:1)是在改良的家用微波炉(2.45 GHz,700 W)中通过微波诱导燃烧法,用硝酸铈和硝酸锆前体在约40分钟内使用以下方法合成的:尿素作为点火燃料。为了更好地比较,还通过常规共沉淀法从硝酸盐前体合成了Ce(x)Zr1-x O-2固溶体(摩尔比为1:1),并使其经受了不同的煅烧温度。两种方法的合成粉末均通过X射线粉末衍射,热重分析/差热分析,扫描电子显微镜和BET表面积技术进行了表征。进行储氧量(OSC)测量以了解这些材料在各种应用中的有用性。表征结果表明,通过微波诱导的燃烧合成途径获得的样品表现出均相的单相Ce0.5Zr0.5O2固溶体,而共沉淀的样品则表现出成分的不均一性。 OSC测量表明,通过两种方法合成的材料均显示出相当的氧空位含量(δ)。

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