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Computational Analysis of the Optical and Charge Transport Properties of Ultrasonic Spray Pyrolysis-Grown Zinc Oxide/Graphene Hybrid Structures

机译:超声喷雾热解生长的氧化锌/石墨烯杂化结构的光学和电荷输运性质的计算分析

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摘要

We demonstrate a systematic computational analysis of the measured optical and charge transport properties of the spray pyrolysis-grown ZnO nanostructures, i.e. nanosphere clusters (NSCs), nanorods (NRs) and nanowires (NWs) for the first time. The calculated absorbance spectra based on the time-dependent density functional theory (TD-DFT) shows very close similarity with the measured behaviours under UV light. The atomic models and energy level diagrams for the grown nanostructures were developed and discussed to explain the structural defects and band gap. The induced stresses in the lattices of ZnO NSCs that formed during the pyrolysis process seem to cause the narrowing of the gap between the energy levels. ZnO NWs and NRs show homogeneous distribution of the LUMO and HOMO orbitals all over the entire heterostructure. Such distribution contributes to the reduction of the band gap down to 2.8 eV, which has been confirmed to be in a good agreement with the experimental results. ZnO NWs and NRs exhibited better emission behaviours under the UV excitation as compared to ZnO NSCs and thin film as their visible range emissions are strongly quenched. Based on the electrochemical impedance measurement, the electrical models and electrostatic potential maps were developed to calculate the electron lifetime and to explain the mobility or diffusion behaviours in the grown nanostructure, respectively.
机译:我们首次展示了喷雾热解生长的ZnO纳米结构(即纳米球团簇(NSC),纳米棒(NRs)和纳米线(NWs))的光学和电荷传输性质的测量计算系统分析。基于时变密度泛函理论(TD-DFT)的计算吸收光谱显示与紫外光下的测量行为非常相似。开发并讨论了用于生长的纳米结构的原子模型和能级图,以解释结构缺陷和带隙。在热解过程中形成的ZnO NSC晶格中的诱导应力似乎导致能级之间的间隙变窄。 ZnO NW和NRs在整个异质结构上均显示LUMO和HOMO轨道的均匀分布。这种分布有助于将带隙减小到2.8eV,这已被证实与实验结果很好地吻合。与ZnO NSC和薄膜相比,ZnO NW和NR在紫外线激发下表现出更好的发射行为,因为它们的可见光发射被强烈淬灭。基于电化学阻抗测量,分别建立了电模型和静电势图,以计算电子寿命并解释在生长的纳米结构中的迁移或扩散行为。

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