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Bandgap Engineering By Tuning Particle Size And Crystallinity Of Sno_2-fe_2o_3 Nanocrystalline Composite Thin Films

机译:通过调整Sno_2-fe_2o_3纳米晶复合薄膜的粒径和结晶度的带隙工程

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摘要

We report the structural and optical properties of xSnO_2- yFe_2O_3 nanocrystalline composite thin films. SnO_2 and Fe_2O_3 exhibit strong phase separation instability and their particle size and crystallinity are tunable by changing their composition and annealing temperature. The bandgap for these composites continuously increases from 2.3 to 3.89 eV. We discuss the increasing bandgap values in terms of the quantum confinement effect manifested by the decreasing size of Fe_2O_3 crystallites. The method provides a generic approach for the tuning of the bandgap in nanocomposite systems.
机译:我们报告了xSnO_2- yFe_2O_3纳米晶复合薄膜的结构和光学性质。 SnO_2和Fe_2O_3表现出很强的相分离不稳定性,并且通过改变其组成和退火温度可以调节其粒径和结晶度。这些复合材料的带隙从2.3 eV连续增加。我们讨论了由Fe_2O_3微晶尺寸减小所体现的量子约束效应所带来的带隙值的增加。该方法提供了用于调节纳米复合系统中的带隙的通用方法。

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