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Optical properties of nanocrystal interfaces in compressed MgO nanopowders

机译:压缩MgO纳米粉体中纳米晶体界面的光学性质

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摘要

The optical properties and charge trapping phenomena observed on oxide nanocrystal ensembles can be strongly influenced by the presence of nanocrystal interfaces. MgO powders represent a convenient system to study these effects due to the well-defined shape and controllable size distributions of MgO nanocrystals. The spectroscopic properties of nanocrystal interfaces are investigated by monitoring the dependence of absorption characteristics on the concentration of the interfaces in the nanopowders. The presence of interfaces is found to affect the absorption spectra of nanopowders more significantly than changing the size of the constituent nanocrystals and, thus, leading to the variation of the relative abundance of light-absorbing surface structures. We find a strong absorption band in the 4.0-5.5 eV energy range, which was previously attributed to surface features of individual nanocrystals, such as corners and edges. These findings are supported by complementary first-principles calculations. The possibility to directly address such interfaces by tuning the energy of excitation may provide new means for functionalization and chemical activation of nanostructures and can help improve performance and reliability for many nanopowder applications.
机译:在氧化物纳米晶体集合体上观察到的光学性质和电荷俘获现象会受到纳米晶体界面的存在的强烈影响。 MgO粉末由于MgO纳米晶体的明确定义的形状和可控制的尺寸分布,代表了研究这些效应的便捷系统。通过监测吸收特性对纳米粉体中界面浓度的依赖性,研究了纳米晶界面的光谱性质。发现界面的存在比改变组成纳米晶体的尺寸更显着地影响纳米粉体的吸收光谱,并因此导致光吸收表面结构的相对丰度的变化。我们发现在4.0-5.5 eV能量范围内有很强的吸收带,这以前归因于单个纳米晶体的表面特征,例如角和边缘。这些发现得到补充的第一性原理计算的支持。通过调节激发能直接解决这类界面的可能性,可以为纳米结构的功能化和化学活化提供新的手段,并可以帮助提高许多纳米粉体应用的性能和可靠性。

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