Focused electron beam irradiation has been used to create mono and divacancies in graphene within a defined area, which then act as trap sites for mobile Fe atoms initially resident on the graphene surface. Aberration-corrected transmission electron microscopy at 80 kV has been used to study the real time dynamics of Fe atoms filling the vacancy sites in graphene with atomic resolution. We find that the incorporation of a dopant atom results in pronounced displacements of the surrounding carbon atoms of up to 0.5 Å, which is in good agreement with density functional theory calculations. Once incorporated into the graphene lattice, Fe atoms can transition to adjacent lattice positions and reversibly switch their bonding between four and thre...
Defects in graphene alter its electrical, chemical, magnetic and mechanical properties. The intentio...
Defects in graphene alter its electrical, chemical, magnetic and mechanical properties. The intentio...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
The effect of electron irradiation on the dynamic behavior of Fe atoms, embedded into monoS vacancy ...
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...
Substituting heteroatoms into graphene can tune its properties for applications ranging from catalys...
Substituting heteroatoms into graphene can tune its properties for applications ranging from catalys...
Vacancy defects play an important role in influencing the properties of graphene and understanding t...
Vacancy defects play an important role in influencing the properties of graphene and understanding t...
Graphene has grabbed enormous research attention due to its multiple unique properties. These proper...
Defects in graphene alter its electrical, chemical, magnetic and mechanical properties. The intentio...
Defects in graphene alter its electrical, chemical, magnetic and mechanical properties. The intentio...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
The effect of electron irradiation on the dynamic behavior of Fe atoms, embedded into monoS vacancy ...
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...
Substituting heteroatoms into graphene can tune its properties for applications ranging from catalys...
Substituting heteroatoms into graphene can tune its properties for applications ranging from catalys...
Vacancy defects play an important role in influencing the properties of graphene and understanding t...
Vacancy defects play an important role in influencing the properties of graphene and understanding t...
Graphene has grabbed enormous research attention due to its multiple unique properties. These proper...
Defects in graphene alter its electrical, chemical, magnetic and mechanical properties. The intentio...
Defects in graphene alter its electrical, chemical, magnetic and mechanical properties. The intentio...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...