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Transition in the nanoporous structure of iron oxides during the oxidation of iron nanoparticles and nanowires

机译:氧化铁纳米颗粒和纳米线氧化过程中氧化铁纳米多孔结构的转变

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摘要

Changes in morphology during the oxidation of iron nanoparticles and nanowires in the temperature range 473-873 K have been studied by transmission electron microscopy. Iron nanoparticles and wires become hollow nanoparticles and nanotubes of magnetite at temperatures below 673 K as a result of vacancy aggregation during the oxidation process, resulting from the outward diffusion of iron ions through the magnetite layer. On the other hand, the hollow magnetite transforms into duplex porous structures with an interior nanopore and additional nanovoids at higher temperatures above 673 K, where the inner and outer diameters of magnetite nanotubes shrink and the phase transformation from magnetite to maghemite occurs. Transition in the porous structure seems to be related to the outward diffusion of vacancies from interior pore and the phase transformation from magnetite to maghemite.
机译:通过透射电子显微镜研究了铁纳米颗粒和纳米线在473-873 K温度范围内氧化过程中的形貌变化。铁纳米颗粒和金属丝在低于 673 K 的温度下成为磁铁矿的空心纳米颗粒和纳米管,这是由于氧化过程中的空位聚集,这是铁离子通过磁铁矿层向外扩散的结果。另一方面,空心磁铁矿在高于673 K的高温下转变为具有内部纳米孔和附加纳米孔隙的双相多孔结构,其中磁铁矿纳米管的内径和外径收缩,发生从磁铁矿到磁铁矿的相变。多孔结构的转变似乎与内部孔隙空位的向外扩散以及从磁铁矿到磁铁矿的相变有关。

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