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- W4284697911 abstract "We perform quantitative analysis of the X-ray absorption data taken in situ during the earliest cycles of the ZnO atomic layer deposition on atomically flat InGaAs (001) surfaces. As deposition progresses, we observe a transition from an amorphous structure to a nanocrystalline one. The former retains much of the characteristics of a ZnO crystal in the Zn coordination shell, while the latter shows atomic ordering up to at least the third neighbor shell of Zn atoms, despite the absence of Bragg X-ray diffraction peaks. We show that the different chemical preparation of the substrate surface affects the ZnO local structure and that, counterintuitively, a stronger short-range order is obtained in the nanostructures characterized by lower local order at the interface. We propose a model that accounts for these findings." @default.
- W4284697911 created "2022-07-08" @default.
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- W4284697911 date "2022-07-05" @default.
- W4284697911 modified "2023-10-18" @default.
- W4284697911 title "Short-Range Mechanisms in the Creation of a ZnO/InGaAs Interface" @default.
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- W4284697911 doi "https://doi.org/10.1021/acs.cgd.2c00137" @default.
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