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Optical properties of nanocomposites with iron core-iron oxide shell structure

机译:具有铁核-氧化铁壳结构的纳米复合材料的光学性质

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Iron natioparticles of diameter similar to 5 nm were produced within a get-derived silica glass by reducing a suitable gel composition. By heating these composites in the temperature range 573-973 K, Fe3O4 shells of a few nanometer thickness were grown around the iron nanoparticles. Three peaks were observed in the optical absorption spectra of the nanocomposites when they were dispersed in ethyl alcohol. The first one around 300 nm was caused by plasma resonance absorption of unoxidized iron particles; the second was shown to be due to the core-shell structure with different permittivities of the two regions and the third one was ascribed to a d-d transition. Detailed analyses of the second peak showed that the extracted values of electrical conductivity were below Mott's minimum metallic conductivity for iron in the case of particles with diameters below similar to 2.5 nm. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过还原合适的凝胶组成,在衍生的石英玻璃中产生了直径类似于5 nm的铁纳米粒子。通过在573-973 K的温度范围内加热这些复合材料,在铁纳米颗粒周围生长了几纳米厚的Fe3O4壳。当它们分散在乙醇中时,在纳米复合材料的光吸收光谱中观察到三个峰。第一个在300 nm附近是由未氧化的铁颗粒的等离子体共振吸收引起的。第二个是由于两个区域的介电常数不同而形成的核-壳结构,第三个是由于d-d跃迁。对第二个峰的详细分析表明,对于直径小于2.5 nm的颗粒,所提取的电导率值低于铁的Mott最小金属电导率。 (c)2006 Elsevier B.V.保留所有权利。

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