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- W2995120017 abstract "We show that boron-doped epitaxial graphene can be successfully grown by thermal decomposition of a boron carbide thin film, which can also be epitaxially grown on a silicon carbide substrate. The interfaces of B4C on SiC and graphene on B4C had a fixed orientation relation, having a local stable structure with no dangling bonds. The first carbon layer on B4C acts as a buffer layer, and the overlaying carbon layers are graphene. Graphene on B4C was highly boron doped, and the hole concentration could be controlled over a wide range of 2 × 1013 to 2 × 1015 cm−2. Highly boron-doped graphene exhibited a spin-glass behavior, which suggests the presence of local antiferromagnetic ordering in the spin-frustration system. Thermal decomposition of carbides holds the promise of being a technique to obtain a new class of wafer-scale functional epitaxial graphene for various applications." @default.
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- W2995120017 date "2020-01-17" @default.
- W2995120017 modified "2023-10-16" @default.
- W2995120017 title "Controlled growth of boron-doped epitaxial graphene by thermal decomposition of a B<sub>4</sub>C thin film" @default.
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- W2995120017 doi "https://doi.org/10.1088/1361-6528/ab62cf" @default.
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