Chemical functionalization and mechanical strain of graphene are both important for the optimization of flexible electronic devices as both can alter the electronic structure of graphene. Here, we investigate the combined effects of covalent aryl diazonium functionalization and mechanical strain on graphene by Raman spectroscopy. Raman spectroscopy provides a wealth of information regarding the electronic structure of graphene and can be easily applied to flexible device architectures. The use of chemical vapor deposition (CVD) grown polycrystalline graphene is found to exhibit increased reactivity toward diazonium functionalization. This is attributed to the increased reactivity of defects predominantly present along domain boundaries. Fun...
In this article we present the results of micro-Raman studies of graphene grown on copper foil surfa...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
The properties of graphene depend sensitively on strain and doping affecting its behavior in device...
Raman spectroscopy is undoubtedly the most frequently used technique for universal characterization ...
Control over chemical reactivity is essential in the field of nanotechnology. Graphene is a two-dime...
The site-dependent and spontaneous functionalization of 4-bromobenzene diazonium tetralluoroborate (...
The chemical behavior of bilayer graphene under strong covalent and noncovalent functionalization is...
Chemical vapour deposition on copper is an effective way to synthesize large scale, high quality gra...
The properties of graphene depend sensitively on strain and doping affecting its behavior in devices...
Raman spectroscopy was used to study the structure of graphene synthesized from methane by chemical ...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
The deformation of monolayer graphene, produced by chemical vapor deposition (CVD), on a polyester f...
The systematic Raman spectroscopic study of a “mimicked” graphene device fabrication is presented. U...
In this article we present the results of micro-Raman studies of graphene grown on copper foil surfa...
We report a Raman mapping investigation of strain effects on graphene on transparent and flexible su...
In this article we present the results of micro-Raman studies of graphene grown on copper foil surfa...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
The properties of graphene depend sensitively on strain and doping affecting its behavior in device...
Raman spectroscopy is undoubtedly the most frequently used technique for universal characterization ...
Control over chemical reactivity is essential in the field of nanotechnology. Graphene is a two-dime...
The site-dependent and spontaneous functionalization of 4-bromobenzene diazonium tetralluoroborate (...
The chemical behavior of bilayer graphene under strong covalent and noncovalent functionalization is...
Chemical vapour deposition on copper is an effective way to synthesize large scale, high quality gra...
The properties of graphene depend sensitively on strain and doping affecting its behavior in devices...
Raman spectroscopy was used to study the structure of graphene synthesized from methane by chemical ...
The growth of single layer graphene by chemical vapor deposition on polycrystalline Cu substrates in...
The deformation of monolayer graphene, produced by chemical vapor deposition (CVD), on a polyester f...
The systematic Raman spectroscopic study of a “mimicked” graphene device fabrication is presented. U...
In this article we present the results of micro-Raman studies of graphene grown on copper foil surfa...
We report a Raman mapping investigation of strain effects on graphene on transparent and flexible su...
In this article we present the results of micro-Raman studies of graphene grown on copper foil surfa...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
The properties of graphene depend sensitively on strain and doping affecting its behavior in device...