International audienceWe analyse the electronic and optical properties of graphene quantum dots (GQD) using accurate \textit{ab initio} many-body $GW$ and Bethe-Salpeter calculations. We show that most pristine GQD, including structures with irregular shapes, are characterized by dark low energy singlet excitations that quench fluorescence. We rationalize this property by exploiting the chiral symmetry of the low energy electronic states in graphene. Edge \textit{sp}$^3$ functionalization is shown to efficiently brighten these low lying excitations by distorting the \textit{sp}$^2$ backbone planar symmetry. Such findings reveal an original indirect scenario for the influence of functionalization on the photoluminescence properties
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...
International audienceWe analyse the electronic and optical properties of graphene quantum dots (GQD...
An efficient edge-functionalization strategy with high specificity was employed to study the effects...
We present here a theory of the optical properties of graphene quantum dots (GQDs) with tunable band...
Graphene quantum dots (GQDs) are a new class of fluorescent reporters promising various novel applic...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...
We present a microscopic theory of electronic and optical properties of colloidal graphene quantum d...
Graphene quantum dots (GQDs) are nanosized fragments of graphene containing a bandgap caused by edge...
We investigate from first principles the electronic and optical properties of edge-modulated armchai...
The photoluminescent properties of graphene nanoparticle (named graphene quantum dots) have attracte...
The electronic structure and optical properties of hexagonal armchair and zigzag-edged graphene quan...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...
International audienceWe analyse the electronic and optical properties of graphene quantum dots (GQD...
An efficient edge-functionalization strategy with high specificity was employed to study the effects...
We present here a theory of the optical properties of graphene quantum dots (GQDs) with tunable band...
Graphene quantum dots (GQDs) are a new class of fluorescent reporters promising various novel applic...
In the field of condensed matter, graphene plays a central role as an emerging material for nanoelec...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...
We present a microscopic theory of electronic and optical properties of colloidal graphene quantum d...
Graphene quantum dots (GQDs) are nanosized fragments of graphene containing a bandgap caused by edge...
We investigate from first principles the electronic and optical properties of edge-modulated armchai...
The photoluminescent properties of graphene nanoparticle (named graphene quantum dots) have attracte...
The electronic structure and optical properties of hexagonal armchair and zigzag-edged graphene quan...
We demonstrate that in triangular graphene quantum dots with zigzag edges (TGQD), robust optical tra...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...
International audienceThe outstanding electronic, optical and mechanical properties of graphene stro...