An experimental study on the interaction between the top and bottom layer of a chemically functionalized graphene bilayer by mild oxygen plasma is reported. Structural, chemical, and electrical properties are monitored using Raman spectroscopy, transport measurements, conductive atomic force microscopy and X-ray photoelectron spectroscopy. Single- and double-sided chemical functionalization are found to give very different results: single-sided modified bilayers show relatively high mobility (200–600 cm2 V−1 s−1 at room temperature) and a stable structure with a limited amount of defects, even after long plasma treatment (>60 s). This is attributed to preferential modification and limited coverage of the top layer during plasma exposure, wh...
In this thesis investigations into chemically modified graphene structures are presented. Chemical f...
Highlights • A plasma method for engineering graphene layers based on ion bombardment effect was ado...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
An experimental study on the interaction between the top and bottom layer of a chemically functional...
In this work, covalent modification of mono- and bilayer graphene is achieved using tetrafluorometha...
We report on an adjustable process for the functionalisation of graphene surfaces with a downstream ...
Graphene is a gapless semiconductor with a high charge carrier mobility. In an attempt to apply this...
The chemical behavior of bilayer graphene under strong covalent and noncovalent functionalization is...
Advanced sensing techniques require graphene with high quality and well-controlled surface chemistry...
Graphene, a two dimensional material, can be modified its properties by defects engineering. Here, w...
We report studies on the controlled step-by-step oxidative functionalization of monolayer graphene b...
We present a facile approach to transform multilayer graphene to single-layer graphene in a gradual ...
Graphene, an atom thick layer of carbon, has attracted intense scientific interest due to its except...
Graphene oxide (GO) monolayer sheets, transferred onto Si by the Langmuir-Blodgett technique, were s...
In this work, graphene layers on SiO(2)/Si substrate have been chemically decorated by radio frequen...
In this thesis investigations into chemically modified graphene structures are presented. Chemical f...
Highlights • A plasma method for engineering graphene layers based on ion bombardment effect was ado...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...
An experimental study on the interaction between the top and bottom layer of a chemically functional...
In this work, covalent modification of mono- and bilayer graphene is achieved using tetrafluorometha...
We report on an adjustable process for the functionalisation of graphene surfaces with a downstream ...
Graphene is a gapless semiconductor with a high charge carrier mobility. In an attempt to apply this...
The chemical behavior of bilayer graphene under strong covalent and noncovalent functionalization is...
Advanced sensing techniques require graphene with high quality and well-controlled surface chemistry...
Graphene, a two dimensional material, can be modified its properties by defects engineering. Here, w...
We report studies on the controlled step-by-step oxidative functionalization of monolayer graphene b...
We present a facile approach to transform multilayer graphene to single-layer graphene in a gradual ...
Graphene, an atom thick layer of carbon, has attracted intense scientific interest due to its except...
Graphene oxide (GO) monolayer sheets, transferred onto Si by the Langmuir-Blodgett technique, were s...
In this work, graphene layers on SiO(2)/Si substrate have been chemically decorated by radio frequen...
In this thesis investigations into chemically modified graphene structures are presented. Chemical f...
Highlights • A plasma method for engineering graphene layers based on ion bombardment effect was ado...
The atomically flat surface of graphene provides an opportunity to apply carbon-carbon bond-forming ...