Hydrogenation provides a novel way to tune the electronic properties of graphene. Recent scanning tunneling microscopy experiments have demonstrated that local graphene magnetism can be selectively switched on and off by hydrogen (H) dimers. Employing first-principles calculations in conjunction with the constrained random-phase approximation we determine the strength of the effective Coulomb interaction U in hydrogenated graphene. We find that the calculated U parameters are smaller than the ones in graphene and depend on the H concentration. Moreover, the U parameters are very sensitive to the position of H atoms adsorbed on the graphene lattice. We discuss the instability of the paramagnetic state of the hydrogenated graphene towards the...
Fully hydrogenated graphene (graphane) and partially hydrogenated graphene materials are expected to...
The discovery of room-temperature ferromagnetism of hydrogenated epitaxial graphene on silicon carbi...
Although the unconventional $\pi$-magnetism at the zigzag edges of graphene holds promise for a wide...
Applying density functional theory we studied magnetism in partially hydrogenated graphene. We demon...
Applying density functional theory we studied magnetism in partially hydrogenated graphene. We demon...
Spin-dependent transport in hydrogenated two-dimensional graphene is explored theoretically. Adsorbe...
Spin-dependent features in the conductivity of graphene, chemically modified by a random distributio...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
We show how hydrogenation of graphene nanoribbons at small concentrations can open venues toward car...
Spin-dependent features in the conductivity of graphene, chemically modified by a random distributio...
We revisit the problem of local moment formation in graphene due to chemisorption of individual atom...
In this review we discuss the multifaceted problem of spin transport in hydrogenated graphene from a...
ABSTRACT: Nano systems show a wide variety of change in their properties, magnetic properties are no...
We show how hydrogenation of graphene nanoribbons at small concentrations can open venues toward car...
Fully hydrogenated graphene (graphane) and partially hydrogenated graphene materials are expected to...
The discovery of room-temperature ferromagnetism of hydrogenated epitaxial graphene on silicon carbi...
Although the unconventional $\pi$-magnetism at the zigzag edges of graphene holds promise for a wide...
Applying density functional theory we studied magnetism in partially hydrogenated graphene. We demon...
Applying density functional theory we studied magnetism in partially hydrogenated graphene. We demon...
Spin-dependent transport in hydrogenated two-dimensional graphene is explored theoretically. Adsorbe...
Spin-dependent features in the conductivity of graphene, chemically modified by a random distributio...
Density functional calculations of electronic structure, total energy, structural distortions, and m...
Contains fulltext : 34643.pdf (preprint version ) (Closed access)Density functiona...
We show how hydrogenation of graphene nanoribbons at small concentrations can open venues toward car...
Spin-dependent features in the conductivity of graphene, chemically modified by a random distributio...
We revisit the problem of local moment formation in graphene due to chemisorption of individual atom...
In this review we discuss the multifaceted problem of spin transport in hydrogenated graphene from a...
ABSTRACT: Nano systems show a wide variety of change in their properties, magnetic properties are no...
We show how hydrogenation of graphene nanoribbons at small concentrations can open venues toward car...
Fully hydrogenated graphene (graphane) and partially hydrogenated graphene materials are expected to...
The discovery of room-temperature ferromagnetism of hydrogenated epitaxial graphene on silicon carbi...
Although the unconventional $\pi$-magnetism at the zigzag edges of graphene holds promise for a wide...