The site-dependent and spontaneous functionalization of 4-bromobenzene diazonium tetralluoroborate (4-BBDT) and its doping effect on a mechanically exfoliated graphene (MEG) were investigated. The spatially resolved Raman spectra obtained from both edge and basal region of MEG revealed that 4-BBDT molecules were noncovalently functionalized on the basal region of MEG, while they were covalently bonded to the edge of MEG. The chemical doping effect induced by noncovalently functionalized 4-BBDT molecules on a basal plane region of MEG was successfully explicated by Raman spectroscopy. The position of Fermi level of MEG and the type of doping charge carrier induced by the noncovalently adsorbed 4-BBDT molecules were determined from systematic...
Graphene (GR) attracts increasing attention due to its unique physical and chemical properties, thus...
The verification of a successful covalent functionalization of graphene and related carbon allotrop...
Doping graphene with electron donating or accepting molecules is an interesting approach to introd...
Raman spectroscopy is undoubtedly the most frequently used technique for universal characterization ...
Chemical functionalization and mechanical strain of graphene are both important for the optimization...
The chemical behavior of bilayer graphene under strong covalent and noncovalent functionalization is...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
Buckled graphene produced by the halogen based etching of 6H-SiC provides a new route for the functi...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
Covalent functionalization of graphene is highly sought after, not only in view of the potential app...
The properties of few layer (one layer (1 L) to four layer (4 L)) graphenes doped by adsorption and ...
The verification of a successful covalent functionalization of graphene and related carbon allotrope...
Among various approaches to modify the electronic and chemical properties of graphene, functionaliza...
Graphene is a material of great potential in a broad range of applications, for each of which specif...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
Graphene (GR) attracts increasing attention due to its unique physical and chemical properties, thus...
The verification of a successful covalent functionalization of graphene and related carbon allotrop...
Doping graphene with electron donating or accepting molecules is an interesting approach to introd...
Raman spectroscopy is undoubtedly the most frequently used technique for universal characterization ...
Chemical functionalization and mechanical strain of graphene are both important for the optimization...
The chemical behavior of bilayer graphene under strong covalent and noncovalent functionalization is...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
Buckled graphene produced by the halogen based etching of 6H-SiC provides a new route for the functi...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
Covalent functionalization of graphene is highly sought after, not only in view of the potential app...
The properties of few layer (one layer (1 L) to four layer (4 L)) graphenes doped by adsorption and ...
The verification of a successful covalent functionalization of graphene and related carbon allotrope...
Among various approaches to modify the electronic and chemical properties of graphene, functionaliza...
Graphene is a material of great potential in a broad range of applications, for each of which specif...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
Graphene (GR) attracts increasing attention due to its unique physical and chemical properties, thus...
The verification of a successful covalent functionalization of graphene and related carbon allotrop...
Doping graphene with electron donating or accepting molecules is an interesting approach to introd...