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- W2399970725 abstract "Abstract Nucleation of self-induced In x Al 1−x N nanorod and core-shell structure formation by surface-induced phase separation have been studied at the initial growth stage. The growth of well-separated core-shell nanorods is only found in a transition temperature region (600 °C ≤ T ≤ 800 °C) in contrast to the result of thin film growth outside this region (T 800 °C). Formation of multiple compositional domains, due to phase separation, after ∼20 nm In x Al 1−x N epilayer growth from sapphire substrate promotes the core-shell nanorod growth, showing a modified Stranski-Krastanov growth mode. The use of VN seed layer makes the initial growth of the nanorods directly at the substrate interface, revealing a Volmer-Weber growth mode. Different compositional domains are found on VN template surface to support that the phase separation takes place at the initial nucleation process and forms by a self-patterning effect. The nanorods were grown from In-rich domains and initiated the formation of core-shell nanorods due to spinodal decomposition of the In x Al 1−x N alloy with a composition in the miscibility gap." @default.
- W2399970725 created "2016-06-24" @default.
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- W2399970725 date "2016-09-01" @default.
- W2399970725 modified "2023-09-24" @default.
- W2399970725 title "Nucleation and core-shell formation mechanism of self-induced InxAl1−xN core-shell nanorods grown on sapphire substrates by magnetron sputter epitaxy" @default.
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- W2399970725 doi "https://doi.org/10.1016/j.vacuum.2016.05.022" @default.
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