In certain configurations, the aromatic properties of benzene ring structured molecules allow for unpaired, reactive valence electrons (known as radicals). Clar's goblets are such molecules. With an even number of unpaired radicals, these nanographenes are topologically frustrated hydrocarbons in which pi-bonding network and topology of edges give rise to the magnetism. Clar's goblets are therefore valued as prospective qubits provided they can be modulated between magnetic states. Using first principles DFT, we demonstrate the effects of adsorption on both molecule and substrate in a graphene-Clar's goblet heterostructure. We look at the energy difference bewteen FM and AFM states of the system and discuss underlying physical and chemical ...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
We systematically investigate the magnetic and electronic properties of graphene adsorbed with dilut...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
We report a computational study of adsorption of aromatic radicals onto graphene, with the aim of un...
© 2015 The Royal Society of Chemistry. The electronic structure of physisorbed molecules containing ...
We investigate by ab initio theoretical methods phenomena occurring on the femtosecond time scale as...
This paper investigates the adsorption of carbon adatoms on graphene and its nanoribbons using first...
We review first the unique band structure of graphene and explain how the linear dispersion near the...
| openaire: EC/H2020/785219/EU//GrapheneCore2 | openaire: EC/H2020/696656/EU//GrapheneCore1 | openai...
The interest in understanding the interaction between graphene and atoms that are adsorbed on its su...
We show theoretically that in the external magnetic field like charges on top of graphene monolayer ...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
International audienceThe combination of graphene with molecules offers promising opportunities to a...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
We systematically investigate the magnetic and electronic properties of graphene adsorbed with dilut...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
We report a computational study of adsorption of aromatic radicals onto graphene, with the aim of un...
© 2015 The Royal Society of Chemistry. The electronic structure of physisorbed molecules containing ...
We investigate by ab initio theoretical methods phenomena occurring on the femtosecond time scale as...
This paper investigates the adsorption of carbon adatoms on graphene and its nanoribbons using first...
We review first the unique band structure of graphene and explain how the linear dispersion near the...
| openaire: EC/H2020/785219/EU//GrapheneCore2 | openaire: EC/H2020/696656/EU//GrapheneCore1 | openai...
The interest in understanding the interaction between graphene and atoms that are adsorbed on its su...
We show theoretically that in the external magnetic field like charges on top of graphene monolayer ...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
Noncovalent functionalization via physisorption of organic molecules provides a scalable approach fo...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
International audienceThe combination of graphene with molecules offers promising opportunities to a...
International audienceGraphene-based two-dimensional materials have attracted an increasing attentio...
We systematically investigate the magnetic and electronic properties of graphene adsorbed with dilut...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...