Publisher's version (útgefin grein).The electronic structure, specific heat, and thermal conductivity of silicon embedded in a monolayer graphene nanosheet are studied using Density Functional Theory. Two different shapes of the substitutional Si doping in the graphene are studied, a triangular and a dot shape. The silicon doping of a graphene nanosheet, with the silicon atoms arranged in a triangular configuration in ortho- and para-positions, opens up a band gap transforming the sheet to a semiconducting material. The opening of the band gap is caused by the presence of the repulsion force between the silicon and carbon atoms decreasing the density of states around the Fermi energy. Consequently, the specific heat and the thermal conducti...
Using density functional theory combined with a Green's function scattering approach, we examine the...
International audienceIt is demonstrated that a graphene-based film (GBF) functionalized with silane...
Journal ArticleUsing first-principles electronic structure calculations, we show a metal-semiconduct...
The behaviour of two graphene based structures has been theoretically investigated and analysed by u...
Graphene, a 2D layer of sp(2) bonded carbon atoms in honeycomb arrangement, is a recently synthesize...
The project is comparing four types of calculation derived graphene. That two of these derivatives o...
AbstractGraphene, a 2D layer of sp2 bonded carbon atoms in honeycomb arrangement, is a recently synt...
The successful synthesis and outstanding properties of graphene have promoted strong interest in stu...
fundamental understanding of thermal dissipation and energy transport is necessary for designing rob...
Graphene, as a typical two-dimensional nanometer material, has shown its unique application potentia...
It is a general consensus that silicon metal–oxide–semiconductor FET (MOSFET) is approaching its sca...
Recent theoretical and experimental studies demonstrated that breaking of the sublattice symmetry in...
Two-dimensional (2D) nanomaterials have attracted intensive interest in the past decades owing to th...
In today’s nanotechnology, a critical issue is to gain the ability to control the structure and func...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...
Using density functional theory combined with a Green's function scattering approach, we examine the...
International audienceIt is demonstrated that a graphene-based film (GBF) functionalized with silane...
Journal ArticleUsing first-principles electronic structure calculations, we show a metal-semiconduct...
The behaviour of two graphene based structures has been theoretically investigated and analysed by u...
Graphene, a 2D layer of sp(2) bonded carbon atoms in honeycomb arrangement, is a recently synthesize...
The project is comparing four types of calculation derived graphene. That two of these derivatives o...
AbstractGraphene, a 2D layer of sp2 bonded carbon atoms in honeycomb arrangement, is a recently synt...
The successful synthesis and outstanding properties of graphene have promoted strong interest in stu...
fundamental understanding of thermal dissipation and energy transport is necessary for designing rob...
Graphene, as a typical two-dimensional nanometer material, has shown its unique application potentia...
It is a general consensus that silicon metal–oxide–semiconductor FET (MOSFET) is approaching its sca...
Recent theoretical and experimental studies demonstrated that breaking of the sublattice symmetry in...
Two-dimensional (2D) nanomaterials have attracted intensive interest in the past decades owing to th...
In today’s nanotechnology, a critical issue is to gain the ability to control the structure and func...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...
Using density functional theory combined with a Green's function scattering approach, we examine the...
International audienceIt is demonstrated that a graphene-based film (GBF) functionalized with silane...
Journal ArticleUsing first-principles electronic structure calculations, we show a metal-semiconduct...