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首页> 外文期刊>CERAMICS INTERNATIONAL >Morphological and crystalline evolution of Sm-(20 mol%)-doped ceria nanopowders prepared by a combined co-precipitation/hydrothermal synthesis for solid oxide fuel cell applications
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Morphological and crystalline evolution of Sm-(20 mol%)-doped ceria nanopowders prepared by a combined co-precipitation/hydrothermal synthesis for solid oxide fuel cell applications

机译:用氧化物燃料电池应用组合共沉淀/水热合成制备的SM-(20mol%)掺杂的二氧化铈纳米粉粉的形态学和结晶演化

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摘要

Nanocrystalline Samarium (20 mol%)-doped ceria (SDC20) nanopowders were prepared using a combined co-precipitation/hydrothermal treatment synthesis route carried out at reduced temperature (120 degrees C). The amorphous precursor experiences some microstructural transformations during the hydrothermal treatment, and after 16 h a Samarium-Cerium hydroxide carbonate, characterized by a hexagonal crystalline lattice, spherical morphology and particles of about 100 nm in size, with a very low degree of agglomeration, is the only present phase in contrast to the initial amorphous state. After the calcination step, the powders which preserved this morphology are still characterized by the absence of hard agglomerates. As a consequence, these powders exhibited an excellent sintering behaviour with a microstructure characterized by regular, equiaxed and micrometric grain size. In fact, at 1500 degrees C a nearly perfect densified sample was obtained, but also at 1300 degrees C a very good sintering behaviour was observed. Finally, the electrochemical characterization carried out by EIS measurements showed a very good electrical behaviour with high ionic conductivity, i.e. at 800 degrees C 5.2.10(-2) S cm(-1) and 4.8.10(-2) S cm(-1) for pellets sintered at 1500 degrees C and 1300 degrees C respectively, making them suitable for IT-SOFCs.
机译:使用在降低温度(120℃)下进行的组合共沉淀/水热处理合成路线制备纳米晶钐(20mol%)掺杂的二氧化铈(SDC20)纳米孔。无定形前体在水热处理期间经历了一些微观结构转化,并在16次HA钐 - 氢氧化铈碳酸铈之后,其特征在于六边形结晶晶格,球形形貌和约100nm的颗粒,具有非常低的聚集度,是只有与初始非晶态相比的阶段。在煅烧步骤之后,保留了这种形态的粉末仍然表征缺乏硬凝聚。因此,这些粉末表现出优异的烧结行为,其微观结构以规则,等式和微米晶粒尺寸为特征。实际上,在1500摄氏度下获得近乎完美的致密样品,但也在1300℃下观察到非常好的烧结行为。最后,通过EIS测量进行的电化学表征显示出具有高离子导电性的非常好的电动行为,即在800℃5.2.10(-2)ccm(-1)和4.8.10(-2)Scm( -1)对于在1500摄氏度和1300摄氏度下烧结的颗粒,使其适用于IT-SOFC。

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