A systematic study of simulated atomic-resolution Electronic Energy-Loss Spectroscopy (EELS) for different graphene nanoribbons (GNRs) is presented. The results of ab initio studies of carbon 1s core-loss EELS on GNRs with different ribbon edge structures and different hydrogen terminations show that theoretical core-loss EELS can distinguish key structural features at the atomic scale. In addition, the combination of polarized core-loss EELS with symmetry resolved electronic partial density of states (PDOS) calculations can be used to identify the origins of all the primary features in the spectra. For example, the nature of the GNR edge structure (armchair, zigzag, etc) can be identified, along with the degree of hydrogenation. Hence it i...
In this study, we investigated the edge formation energy of hydrogen-terminated graphene nanoribbons...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
The spatial distributions of antibonding π∗ and σ∗ states in epitaxial graphene multilayers are mapp...
A systematic study of simulated atomic-resolution Electronic Energy-Loss Spectroscopy (EELS) for dif...
Bottom-up approaches exploiting on-surface synthesis reactions allow atomic-scale precision in the f...
Electron energy loss spectroscopy (EELS) is a powerful tool for understanding the chemical structure...
ABSTRACT: The local atomic bonding of carbon atoms around the edge of graphene is examined by aberra...
The local atomic bonding of carbon atoms around the edge of graphene is examined by aberration-corre...
The local atomic bonding of carbon atoms around the edge of graphene is examined by aberration-corre...
International audienceWe show that Clar?s theory of the aromatic sextet is a simple and powerful too...
The local atomic bonding of carbon atoms around the edge of graphene is examined by aberration-corre...
The general objective of the research project is to study the electronic properties of graphene nan...
The edges of graphene nanoribbons (GNRs) have attracted much interest due to their potentially stron...
We present a systematic density functional theory study of the electronic properties, optical spectr...
The edges of graphene nanoribbons (GNRs) have attracted much interest due to their potentially stron...
In this study, we investigated the edge formation energy of hydrogen-terminated graphene nanoribbons...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
The spatial distributions of antibonding π∗ and σ∗ states in epitaxial graphene multilayers are mapp...
A systematic study of simulated atomic-resolution Electronic Energy-Loss Spectroscopy (EELS) for dif...
Bottom-up approaches exploiting on-surface synthesis reactions allow atomic-scale precision in the f...
Electron energy loss spectroscopy (EELS) is a powerful tool for understanding the chemical structure...
ABSTRACT: The local atomic bonding of carbon atoms around the edge of graphene is examined by aberra...
The local atomic bonding of carbon atoms around the edge of graphene is examined by aberration-corre...
The local atomic bonding of carbon atoms around the edge of graphene is examined by aberration-corre...
International audienceWe show that Clar?s theory of the aromatic sextet is a simple and powerful too...
The local atomic bonding of carbon atoms around the edge of graphene is examined by aberration-corre...
The general objective of the research project is to study the electronic properties of graphene nan...
The edges of graphene nanoribbons (GNRs) have attracted much interest due to their potentially stron...
We present a systematic density functional theory study of the electronic properties, optical spectr...
The edges of graphene nanoribbons (GNRs) have attracted much interest due to their potentially stron...
In this study, we investigated the edge formation energy of hydrogen-terminated graphene nanoribbons...
We study the electronic structure of finite armchair graphene nanoribbons using density-functional t...
The spatial distributions of antibonding π∗ and σ∗ states in epitaxial graphene multilayers are mapp...