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Energy band mixing in core-shell-structured Si/FeSi_2 nanocomposites

机译:核-壳结构Si / FeSi_2纳米复合材料的能带混合

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摘要

Using the bandmixing model of direct and indirect gaps, we calculate the energy levels of electrons and holes confined in the Si/FeSi_2 nanocomposite consisting of nanocrystalline Si core, interfacial FeSi_2 layer, and outer Fe_2O_3 crust. The obtained results explain very well the intensity enhancement and pinning behavior of the observed photoluminescence peaks after the nanocomposite is stored in air. We also theoretically obtain the photoluminescence excitation characteristics. Good agreement is achieved between the theory and experiments.
机译:使用直接和间接间隙的能带混合模型,我们计算了电子和空穴的能级,该电子和空穴被限制在由纳米晶硅核,界面FeSi_2层和外部Fe_2O_3壳组成的Si / FeSi_2纳米复合物中。获得的结果很好地解释了纳米复合材料在空气中存储后观察到的光致发光峰的强度增强和钉扎行为。我们还从理论上获得了光致发光激发特性。理论与实验之间取得了良好的一致性。

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