The direct manipulation of individual atoms in materials using scanning probe microscopy has been a seminal achievement of nanotechnology. Recent advances in imaging resolution and sample stability have made scanning transmission electron microscopy a promising alternative for single-atom manipulation of covalently bound materials. Pioneering experiments using an atomically focused electron beam have demonstrated the directed movement of silicon atoms over a handful of sites within the graphene lattice. Here, we achieve a much greater degree of control, allowing us to precisely move silicon impurities along an extended path, circulating a single hexagon, or back and forth between the two graphene sublattices. Even with manual operation, our...
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 ...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
Recent advances in scanning transmission electron microscopy (STEM) instrumentation have made it pos...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
Building materials from the atom up is the pinnacle of materials fabrication. Until recently the onl...
Building materials from the atom up is the pinnacle of materials fabrication. Until recently the onl...
Despite decades of research, the ultimate goal of nanotechnology—top-down manipulation of individual...
| openaire: EC/H2020/756277/EU//ATMENThe recent discovery that impurity atoms in crystals can be man...
| openaire: EC/H2020/756277/EU//ATMENThe recent discovery that impurity atoms in crystals can be man...
| openaire: EC/H2020/756277/EU//ATMENThe recent discovery that impurity atoms in crystals can be man...
Despite decades of research, the ultimate goal of nanotechnology - top-down manipulation of individu...
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 ...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
Recent advances in scanning transmission electron microscopy (STEM) instrumentation have made it pos...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
Building materials from the atom up is the pinnacle of materials fabrication. Until recently the onl...
Building materials from the atom up is the pinnacle of materials fabrication. Until recently the onl...
Despite decades of research, the ultimate goal of nanotechnology—top-down manipulation of individual...
| openaire: EC/H2020/756277/EU//ATMENThe recent discovery that impurity atoms in crystals can be man...
| openaire: EC/H2020/756277/EU//ATMENThe recent discovery that impurity atoms in crystals can be man...
| openaire: EC/H2020/756277/EU//ATMENThe recent discovery that impurity atoms in crystals can be man...
Despite decades of research, the ultimate goal of nanotechnology - top-down manipulation of individu...
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 ...