The alteration of graphene's electrical properties through chemical functionalization is a necessary process in order for graphene to fulfill its potential as a transparent conducting electrode. In this work, we present a method for the transfer and intercalation of large area (wafer scale) graphene samples to produce highly doped FeCl3 intercalated Few Layer Graphene (FeCl3-FLG). Given its excellent flexibility, transmission, and a sheet resistance, comparable to that of Indium Tin Oxide, FeCl3-FLG has potential to replace alternative flexible transparent electrodes as well as compete with rigid transparent electrodes. We assess the effect of functionalization temperature on the degree of intercalation in the large area samples and compari...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
This is the final version of the article. Available from Society of Photo-optical Instrumentation En...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
In this study we investigate the effects of intercalation of graphene with Iron III Chloride on the ...
This thesis examines for the first time, the integration of FeCl3 Intercalated Few Layer Graphene (i...
Transparent conductors based on few-layer graphene (FLG) intercalated with ferric chloride (FeCl(3))...
Graphite intercalation compounds (GICs) have atomic ormolecular layers inserted between the graphene...
Every day we interact with dozens of screens and touchscreens, as almost every consumer electronic d...
We report synthesis and transport properties of the minimal graphite intercalation compound, a ferri...
The landscape of consumer electronics has drastically changed over the last decade. Technological ad...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
This is the final version of the article. Available from Society of Photo-optical Instrumentation En...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
In this study we investigate the effects of intercalation of graphene with Iron III Chloride on the ...
This thesis examines for the first time, the integration of FeCl3 Intercalated Few Layer Graphene (i...
Transparent conductors based on few-layer graphene (FLG) intercalated with ferric chloride (FeCl(3))...
Graphite intercalation compounds (GICs) have atomic ormolecular layers inserted between the graphene...
Every day we interact with dozens of screens and touchscreens, as almost every consumer electronic d...
We report synthesis and transport properties of the minimal graphite intercalation compound, a ferri...
The landscape of consumer electronics has drastically changed over the last decade. Technological ad...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...
International audienceA self-organized three-dimensional (3D) graphene electrode processed by pulsed...