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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Ni-doped (CeO2-delta)-YSZ mesoarchitectured with nanocrystalline framework: the effect of thermal treatment on structure, surface chemistry and catalytic properties in the partial oxidation of methane (CPOM)
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Ni-doped (CeO2-delta)-YSZ mesoarchitectured with nanocrystalline framework: the effect of thermal treatment on structure, surface chemistry and catalytic properties in the partial oxidation of methane (CPOM)

机译:纳米晶构架的镍掺杂(CeO2-δ)-YSZ中间结构:甲烷对甲烷部分氧化(CPOM)的热处理对结构,表面化学和催化性能的影响

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Ni-doped (CeO2-delta)-YSZ (5 mol% Ni oxide, 10 mol% ceria) mesoarchitectures (MA) with nanocrystalline framework have been synthesized by an original, facile and cheap approach based on Triton X100 nonionic surfactant as template and water as solvent at a strong basic pH value. Following the hydrothermal treatment under autogenous pressure (similar to 18 bars), Ni, Ce, Y, and Zr were well ordered as MA with nanocrystalline framework, assuring thermal stability. A comprehensive investigation of structure, texture, morphology, and surface chemistry was performed by means of a variety of complementary techniques (X-Ray Diffraction, XRD; Raman Spectroscopy, RS; Brunauer-Emmett-Teller, BET; Temperature-Programmed Reduction, TPR; Transmission Electron Microscopy, TEM and DF-STEM; X-ray Photoelectron Spectroscopy, XPS; Catalytic activity and selectivity). N-2 sorption measurements highlighted that the mesoporous structure is formed at 600 degrees C and remains stable at 800 degrees C. At 900 degrees C, the MA collapses, favoring the formation of macropores. The XRD and Raman Spectroscopy of all samples showed the presence of a pure, single phase with fluorite-type structure. At 900 degrees C, an increased tetragonal distortion of the cubic lattice was observed. The surface chemistry probed by XPS exhibits a mixture of oxidation states (Ce3+ + Ce4+) with high percentage of Ce3+ valence state similar to 35 % and (Ni3+ and Ni2+) oxidation states induced by the thermal treatment. These nanoparticles assembled into MA show high stability and selectivity over time in catalytic partial oxidation of methane (CPOM). These promising performances suggest an interesting prospect for introduction as anode within IT-SOFC assemblies.
机译:以Triton X100非离子表面活性剂为模板和水,以新颖,廉价,廉价的方法合成了具有纳米晶骨架的Ni掺杂(CeO2-δ)-YSZ(5 mol%氧化镍,10 mol%氧化铈)介观结构(MA)。在强碱性pH值下用作溶剂。在自生压力(类似于18 bar)下进行水热处理后,Ni,Ce,Y和Zr良好地排列为具有纳米晶体骨架的MA,从而确保了热稳定性。通过各种互补技术(X射线衍射,XRD;拉曼光谱法,RS; Brunauer-Emmett-Teller,BET;温控还原,TPR)对结构,纹理,形态和表面化学进行了全面研究;透射电子显微镜,TEM和DF-STEM; X射线光电子能谱,XPS;催化活性和选择性)。 N-2吸附测量结果表明,中孔结构在600摄氏度时形成,并在800摄氏度时保持稳定。在900摄氏度时,MA塌陷,有利于大孔的形成。所有样品的XRD和拉曼光谱显示存在具有萤石型结构的纯单相。在900摄氏度时,观察到立方晶格的四边形变形增加。 XPS探测到的表面化学物质显示出混合的氧化态(Ce3 + + Ce4 +)和高百分比的Ce3 +价态,与热处理引起的35%氧化态(Ni3 +和Ni2 +)混合。这些组装成MA的纳米颗粒在甲烷的催化部分氧化(CPOM)中显示出高的稳定性和随时间的选择性。这些令人鼓舞的性能表明了将其作为IT-SOFC组件中阳极的有趣前景。

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