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Comparative study of iron oxide nanoparticles as-prepared and dispersed in Copaiba oil using Mössbauer spectroscopy with low and high velocity resolution

机译:低速和高速分辨的穆斯堡尔光谱法比较制备和分散在Copaiba油中的氧化铁纳米颗粒

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摘要

Iron oxide nanoparticles, probably magnetite, as-prepared and dispersed in Copaiba oil were studied by Mössbauer spectroscopy using two different spectrometers: with a low velocity resolution (512 channels) for measurements at 295 and 21 K and with a high velocity resolution (4096 channels) for measurements at 295 and 90 K. The fitting of all measured spectra demonstrated that usual models applied to fit Mössbauer spectra of magnetite and maghemite particles were not suitable. Therefore, the recorded spectra were fitted using a large number of spectral components on the basis of better quality of the fit and linearity of differential spectra. The number of components obtained for the better fit appeared to be different for spectra measured with a low and a high velocity resolution. However, these results demonstrated differences of Mössbauer parameters for iron oxide nanoparticles as-prepared and dispersed in Copaiba oil at applied temperatures. The effect of Copaiba oil molecules on Mössbauer parameters may be a result of the interactions of polar molecules such as kaurinic acid with nanoparticles' surface.
机译:Mössbauer光谱学使用两种不同的光谱仪研究了制备并分散在Copaiba油中的氧化铁纳米颗粒,可能是磁铁矿,并在其中进行了分散:低速分辨率(512通道)用于295和21 K的测量,以及高速度分辨率(4096通道) )在295和90 K下进行测量。所有测量光谱的拟合表明,用于拟合磁铁矿和磁赤铁矿粒子Mössbauer光谱的常用模型不适合。因此,在更好的拟合质量和差分光谱的线性度的基础上,使用大量光谱分量拟合记录的光谱。对于以低分辨率和高速分辨率测量的光谱,为获得更好的拟合而获得的组件数量似乎有所不同。但是,这些结果证明了在应用温度下,制备并分散在Copaiba油中的氧化铁纳米颗粒的Mössbauer参数存在差异。 Copaiba油分子对Mössbauer参数的影响可能是极性分子(如贝壳杉酸)与纳米颗粒表面相互作用的结果。

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