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Formation of modulated structures in single-crystalline hexagonal α-Fe2O3 nanowires

机译:单晶六角形α-Fe 2 O 3 纳米线中调制结构的形成

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The microstructures and growth mechanism of Fe2O3 nanowires (NWs) synthesized by thermal oxidation of iron are studied in detail by transmission electron microscopy. Three different structures, single-crystalline, bicrystalline, and tricrystalline, are observed in the NWs. It is found that single-crystalline Fe2O3 NWs have a hexagonal structure while bicrystalline and tricrystalline NWs possess a cubic one. The differences in the electronic structures of the three Fe2O3 NWs are examined by electron energy-loss spectroscopy. A modulated structure with a periodicity of 1.53 nm is observed in single-crystalline Fe2O3 NWs, but not in bicrystalline or tricrystalline Fe2O3 NWs. The formation of the modulated structure in single-crystalline NWs is attributed to the periodical appearance of stacking faults, because of the shear stress occurred during the growth process. NWs possessing a cubic γ-Fe2O3 structure tend to coalesce into the bicrystalline or tricrystalline NWs whereas NWs with the hexagonal α-Fe2O3 structure prefer to grow as single-crystalline NWs. The formation mechanism of Fe2O3 NWs with the different morphologies is discussed.
机译:通过透射电子显微镜详细研究了铁热氧化合成的Fe 2 O 3 纳米线(NWs)的微观结构和生长机理。在西北部观察到三种不同的结构,单晶,双晶和三晶。发现单晶Fe 2 O 3 NW具有六方结构,而双晶和三晶NW具有立方结构。通过电子能量损失谱分析了三种Fe 2 O 3 NW的电子结构差异。在单晶Fe 2 O 3 NW中观察到周期为1.53 nm的调制结构,而在双晶或三晶Fe 2 中则没有O 3 个NW。由于生长过程中发生剪切应力,单晶纳米线中调制结构的形成归因于堆垛层错的周期性出现。具有立方γ-Fe 2 O 3 结构的NW趋于聚结成双晶或三晶NW,而具有六角形α-Fe 2 的NW趋于聚结。 O 3 结构倾向于以单晶NW的形式生长。探讨了不同形态的Fe 2 O 3 NWs的形成机理。

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