We performed density-functional theory calculations to study the electronic structures at the interfaces between graphene and organic molecules that have been used in organic light-emitting diodes. In terms of work function, graphene itself is not favorable as either anode or cathode for commonly used electron or hole transport molecular species. However, the formation of charge transfer complex on the chemically inert sp(2) carbon surface can provide a particular advantage. Unlike metal surfaces, the graphene surface remains non-bonded to electron-accepting molecules even after electron transfer, inducing an improved Fermi-level alignment with the highest-occupied-molecular-orbital level of the hole-injecting-layer molecules.open1
A major bottleneck in the fabrication of efficient bio-organic nanoelectronic devices resides in the...
A major bottleneck in the fabrication of efficient bio-organic nanoelectronic devices resides in the...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
We performed density-functional theory calculations to study the electronic structures at the interf...
To elucidate the features of graphene as an electrode material, we studied the effect of defects and...
We report a combined Non-Equilibrium Green's Function - Density Functional Theory study of molecular...
Density functional theory calculations have been performed to assess the electronic structure of gra...
© 2015 The Royal Society of Chemistry. The electronic structure of physisorbed molecules containing ...
Hybridizing graphene and molecules possess a high potential for developing materials for new applica...
Graphene has conquered the field of Cutting Edge Technology as the ultimate next generation material...
In this study, we report on the self-assembly of the organic electron donor 2,3,6,7,10,11-hexamethox...
Density functional theory (DFT) is applied to three models for carbon-based molecular junctions cont...
This dissertation research is focused on first principles studies of graphene and single organic mol...
Charge transfer at the interface between dissimilar materials is at the heart of electronics and pho...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
A major bottleneck in the fabrication of efficient bio-organic nanoelectronic devices resides in the...
A major bottleneck in the fabrication of efficient bio-organic nanoelectronic devices resides in the...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...
We performed density-functional theory calculations to study the electronic structures at the interf...
To elucidate the features of graphene as an electrode material, we studied the effect of defects and...
We report a combined Non-Equilibrium Green's Function - Density Functional Theory study of molecular...
Density functional theory calculations have been performed to assess the electronic structure of gra...
© 2015 The Royal Society of Chemistry. The electronic structure of physisorbed molecules containing ...
Hybridizing graphene and molecules possess a high potential for developing materials for new applica...
Graphene has conquered the field of Cutting Edge Technology as the ultimate next generation material...
In this study, we report on the self-assembly of the organic electron donor 2,3,6,7,10,11-hexamethox...
Density functional theory (DFT) is applied to three models for carbon-based molecular junctions cont...
This dissertation research is focused on first principles studies of graphene and single organic mol...
Charge transfer at the interface between dissimilar materials is at the heart of electronics and pho...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
A major bottleneck in the fabrication of efficient bio-organic nanoelectronic devices resides in the...
A major bottleneck in the fabrication of efficient bio-organic nanoelectronic devices resides in the...
This thesis includes work done on graphene-based materials, examining their unique electronic proper...