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首页> 外文期刊>Journal of Nanoparticle Research >Iron–cobalt nanocrystalline alloy supported on a cubic mesostructured silica matrix: FeCo/SBA-16 porous nanocomposites
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Iron–cobalt nanocrystalline alloy supported on a cubic mesostructured silica matrix: FeCo/SBA-16 porous nanocomposites

机译:立方介孔结构二氧化硅基质上负载的铁钴纳米晶合金:FeCo / SBA-16多孔纳米复合材料

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摘要

A series of novel nanocomposites constituted of FeCo nanoparticles dispersed in an ordered cubic Im3m mesoporous silica matrix (SBA-16) have been successfully synthesized using the wet impregnation method. SBA-16, prepared using the non-ionic Pluronic 127 triblock copolymer as a structure-directing agent, is an excellent support for catalytic nanoparticles because of its peculiar three-dimensional cage-like structure, high surface area, thick walls, and high thermal stability. Low-angle X-ray diffraction, N2 physisorption, and transmission electron microscopy analyses show that after metal loading, calcination at 500 °C, and reduction in H2 flux at 800 °C, the nanocomposites retain the well-ordered structure of the matrix with cubic symmetry of pores. FeCo alloy nanoparticles with spherical shape and narrow size distribution (4–8 nm) are homogeneoulsy distributed throughout the matrix and they seem in a large extent to be allocated inside the pores.
机译:使用湿法浸渍法成功地合成了一系列由分散在有序立方Im3m中孔二氧化硅基质(SBA-16)中的FeCo纳米粒子组成的新型纳米复合材料。使用非离子Pluronic 127三嵌段共聚物作为结构导向剂制备的SBA-16,由于其独特的三维笼状结构,高表面积,厚壁和高热稳定性,因此是催化纳米颗粒的极佳载体。稳定性。低角度X射线衍射,N 2 的物理吸附和透射电子显微镜分析表明,在负载金属后,在500°C下煅烧,并且在H的H 2 通量减少800°C时,纳米复合材料保留了具有立方对称孔的基质的有序结构。具有球形和狭窄尺寸分布(4-8 nm)的FeCo合金纳米颗粒均匀分布在整个基体中,并且似乎在很大程度上分布在孔内。

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