To understand structural and chemical properties of metal–graphene composites, it is crucial to unveil the chemical bonding along the interface. We provide direct experimental evidence of atomic bonding between typical metal nano structures and graphene, agreeing well with density functional theory studies. Single Cr atoms are located in the valleys of a zigzag edge, and few-atom ensembles preferentially form atomic chains by self-assembly. Low migration barriers lead to rich dynamics of metal atoms and clusters under electron irradiation. We demonstrate no electron-instigated interaction between Cr clusters and pristine graphene, though Cr has been reported to be highly reactive to graphene. The metal-mediated etching is a dynamic effect b...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...
The two-dimensional material graphene has numerous potential applications in nano(opto)electronics, ...
Reconstructed point defects in graphene are created by electron irradiation and annealing. By applyi...
To understand structural and chemical properties of metal–graphene composites, it is crucial to unve...
To understand structural and chemical properties of metal–graphene composites, it is crucial to unve...
We present an atomic resolution structural study of covalently bonded dopant pairs in the lattice of...
We present an atomic resolution structural study of covalently bonded dopant pairs in the lattice of...
Recently, atomic resolved scanning tunneling microscopy investigations revealed that, depending on t...
The effects of nitrogen defects on the bonding mechanism and resultant binding energy between the me...
Resumen del póster presentado a la 6th edition of Graphene Conference series, the largest European E...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
A thorough search of the distribution pattern of Na, K, and Ca atoms on graphene surface, carried ou...
Resonance tunneling spectroscopy and density functional theory calculations are employed to explore ...
Graphene derivatives with anchored metal atoms represent a promising class of single-atom catalysts ...
Taking the adsorption of CO, NO, O2 and O as probes, we investigated the electronic structure of tra...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...
The two-dimensional material graphene has numerous potential applications in nano(opto)electronics, ...
Reconstructed point defects in graphene are created by electron irradiation and annealing. By applyi...
To understand structural and chemical properties of metal–graphene composites, it is crucial to unve...
To understand structural and chemical properties of metal–graphene composites, it is crucial to unve...
We present an atomic resolution structural study of covalently bonded dopant pairs in the lattice of...
We present an atomic resolution structural study of covalently bonded dopant pairs in the lattice of...
Recently, atomic resolved scanning tunneling microscopy investigations revealed that, depending on t...
The effects of nitrogen defects on the bonding mechanism and resultant binding energy between the me...
Resumen del póster presentado a la 6th edition of Graphene Conference series, the largest European E...
Using ab initio calculations, we systematically investigate graphene nucleation on 10 representative...
A thorough search of the distribution pattern of Na, K, and Ca atoms on graphene surface, carried ou...
Resonance tunneling spectroscopy and density functional theory calculations are employed to explore ...
Graphene derivatives with anchored metal atoms represent a promising class of single-atom catalysts ...
Taking the adsorption of CO, NO, O2 and O as probes, we investigated the electronic structure of tra...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...
The two-dimensional material graphene has numerous potential applications in nano(opto)electronics, ...
Reconstructed point defects in graphene are created by electron irradiation and annealing. By applyi...