Single-atom catalysts are of great interest because of their high efficiency. In the case of chemically deposited sp2 carbon, the implementation of a single transition metal atom for growth can provide crucial insight into the formation mechanisms of graphene and carbon nanotubes. This knowledge is particularly important if we are to overcome fabrication difficulties in these materials and fully take advantage of their distinct band structures and physical properties. In this work, we present atomically resolved transmission EM in situ investigations of single Fe atoms at graphene edges. Our in situ observations show individual iron atoms diffusing along an edge either removing or adding carbon atoms (viz., catalytic action). The experiment...
The development of catalysts for the hydrogen evolution reaction is pivotal for the hydrogen economy...
The effect of electron irradiation on the dynamic behavior of Fe atoms, embedded into monoS vacancy ...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
Fabricating stable functional devices at the atomic scale is an ultimate goal of nanotechnology. In ...
Fabricating stable functional devices at the atomic scale is an ultimate goal of nanotechnology. In ...
Fabricating stable functional devices at the atomic scale is an ultimate goal of nanotechnology. In ...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
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 ...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
The development of catalysts for the hydrogen evolution reaction is pivotal for the hydrogen economy...
The effect of electron irradiation on the dynamic behavior of Fe atoms, embedded into monoS vacancy ...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
Fabricating stable functional devices at the atomic scale is an ultimate goal of nanotechnology. In ...
Fabricating stable functional devices at the atomic scale is an ultimate goal of nanotechnology. In ...
Fabricating stable functional devices at the atomic scale is an ultimate goal of nanotechnology. In ...
Recent studies of single-atom catalysts open up the prospect of designing exceptionally active and e...
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 ...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...
Focused electron beam irradiation has been used to create mono and divacancies in graphene within a ...
The development of catalysts for the hydrogen evolution reaction is pivotal for the hydrogen economy...
The effect of electron irradiation on the dynamic behavior of Fe atoms, embedded into monoS vacancy ...
In this study, we aim to contribute an understanding of the pathway of formation of Fe species durin...