The chemical behavior of bilayer graphene under strong covalent and noncovalent functionalization is relatively unknown compared to monolayer graphene, which has been far more widely studied. Bilayer graphene is significantly less chemically reactive than monolayer graphene, making it more challenging to study its chemistry in detail. However, bilayer graphene is increasingly attractive for electronic applications rather than monolayer graphene because of its electric-field-controllable band gap, and there is a need for a greater understanding of its chemical functionalization. In this paper, we study the covalent and noncovalent functionalization of bilayer graphene using an electrochemical process with aryl diazonium salts in the high con...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
International audienceGraphene sheets (mono- and multilayers) were synthesized by chemical vapor dep...
We describe a fast and versatile method to functionalize high-quality graphene with organic molecule...
Graphene is a material of great potential in a broad range of applications, for each of which specif...
Chemical functionalization and mechanical strain of graphene are both important for the optimization...
An experimental study on the interaction between the top and bottom layer of a chemically functional...
The site-dependent and spontaneous functionalization of 4-bromobenzene diazonium tetralluoroborate (...
Development of applications for graphene are currently hampered by its poor dispersion in common, lo...
International audienceThe atomically flat surface of graphene provides an opportunity to apply carbo...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
Covalent bond-forming reactions can be used to tailor the properties of graphene, aiming at electron...
Covalent functionalization of graphene is highly sought after, not only in view of the potential app...
Covalent bond-forming reactions can be used to tailor the properties of graphene, aiming at electron...
A central question in graphene chemistry is to what extent chemical modification can control an elec...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
International audienceGraphene sheets (mono- and multilayers) were synthesized by chemical vapor dep...
We describe a fast and versatile method to functionalize high-quality graphene with organic molecule...
Graphene is a material of great potential in a broad range of applications, for each of which specif...
Chemical functionalization and mechanical strain of graphene are both important for the optimization...
An experimental study on the interaction between the top and bottom layer of a chemically functional...
The site-dependent and spontaneous functionalization of 4-bromobenzene diazonium tetralluoroborate (...
Development of applications for graphene are currently hampered by its poor dispersion in common, lo...
International audienceThe atomically flat surface of graphene provides an opportunity to apply carbo...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
Covalent bond-forming reactions can be used to tailor the properties of graphene, aiming at electron...
Covalent functionalization of graphene is highly sought after, not only in view of the potential app...
Covalent bond-forming reactions can be used to tailor the properties of graphene, aiming at electron...
A central question in graphene chemistry is to what extent chemical modification can control an elec...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
International audienceGraphene sheets (mono- and multilayers) were synthesized by chemical vapor dep...
We describe a fast and versatile method to functionalize high-quality graphene with organic molecule...