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- W2025508940 abstract "The influence of hydrogen exposures on monolayer graphene grown on the silicon terminated SiC(0 0 0 1) surface is investigated using photoelectron spectroscopy (PES), low-energy electron microscopy (LEEM) and micro low-energy electron diffraction (μ-LEED). Exposures to ionized hydrogen are shown to have a pronounced effect on the carbon buffer (interface) layer. Exposures to atomic hydrogen are shown to actually convert/transform the monolayer graphene plus carbon buffer layer to bi-layer graphene, i.e. to produce carbon buffer layer free bi-layer graphene on SiC(0 0 0 1). This process is shown to be reversible, so the initial monolayer graphene plus carbon buffer layer situation is recreated after heating to a temperature of about 950 °C. A tentative model of hydrogen intercalation is suggested to explain this single to bi-layer graphene transformation mechanism. Our findings are of relevance and importance for various potential applications based on graphene–SiC structures and hydrogen storage." @default.
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- W2025508940 date "2010-01-01" @default.
- W2025508940 modified "2023-09-23" @default.
- W2025508940 title "Buffer layer free large area bi-layer graphene on SiC(0001)" @default.
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- W2025508940 doi "https://doi.org/10.1016/j.susc.2009.11.011" @default.
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