Research on characteristic properties of ASiGe nanoribbons materials for nanoelectronics and optoelectronics applications. [PDF]
Minh Tien T.
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p-Type Sensing of DNA Nucleobases Adsorbed on Graphene Nanoribbon. [PDF]
Lian T +4 more
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Computational Design of 2D Nanoporous Graphene via Carbon-Bridged Lateral Heterojunctions in Armchair Graphene Nanoribbons. [PDF]
Alves RAF +5 more
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Electrically Tunable Ultraflat Bands and π-Electron Magnetism in Graphene Nanoribbons. [PDF]
Ma R +3 more
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Armoring Boron Nitride with Pyrolytic Carbon Layers for Tunable Rigidity and Flexibility. [PDF]
Lan M +5 more
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Light-Activated Room Temperature Surface Acoustic Wave H2S Sensor Based on Bi2S3 Nanoribbons. [PDF]
Li C, Ramadan S, Kan H, Wang L.
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α-Borophene Nanoribbons: Edge-Dependent Metallic and Magnetic Properties for Low-Dimensional Nanoelectronics. [PDF]
Rakshit S +3 more
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The electronic properties of functionalized MXene M<sub>2</sub>XT<sub>2</sub> (M = Ti, Zr, Sc; X = C; T = O, F) nanoribbon/striped borophene nanoribbon heterojunctions. [PDF]
Shirazinia M, Faizabadi E.
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Graphene nanoribbon heterojunctions [PDF]
Despite graphene's remarkable electronic properties, the lack of an electronic bandgap severely limits its potential for applications in digital electronics. In contrast to extended films, narrow strips of graphene (called graphene nanoribbons) are semiconductors through quantum confinement, with a bandgap that can be tuned as a function of the ...
Jinming Cai +2 more
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Multilayer Silicene Nanoribbons
Nano Letters, 2012The synthesis of silicene, graphene-like silicon, has generated very strong interest. Here, we reveal the growth of high aspect ratio, perfectly straight, and aligned silicon nanoribbons, exhibiting pyramidal cross section. They are multistacks of silicene and show in angle-resolved photoemission cone-like dispersion of their π and π* bands, at the X ...
Paola De Padova +6 more
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