Fabricating stable functional devices at the atomic scale is an ultimate goal of nanotechnology. In biological processes, such high-precision operations are accomplished by enzymes. A counterpart molecular catalyst that binds to a solid-state substrate would be highly desirable. Here, we report the direct observation of single Si adatoms catalyzing the dissociation of carbon atoms from graphene in an aberration-corrected high-resolution transmission electron microscope (HRTEM). The single Si atom provides a catalytic wedge for energetic electrons to chisel off the graphene lattice, atom by atom, while the Si atom itself is not consumed. The products of the chiseling process are atomic-scale features including graphene pores and clean edges....
The use of atomically thin graphene for molecular sensing has attracted tremendous attention over th...
Recent advances in scanning transmission electron microscopy (STEM) instrumentation have made it pos...
Atomic design of a 2D-material such as graphene can be substantially influenced by etching, delibera...
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 ...
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...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
We employ scanning probe microscopy to reveal atomic structures and nanoscale morphology of graphene...
Graphene is an ideal thin membrane substrate for creating molecule-scale devices. Here we demonstrat...
The use of atomically thin graphene for molecular sensing has attracted tremendous attention over th...
Recent advances in scanning transmission electron microscopy (STEM) instrumentation have made it pos...
Atomic design of a 2D-material such as graphene can be substantially influenced by etching, delibera...
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 ...
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...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
We demonstrate assembly of di-, tri- and tetrameric Si clusters on the graphene surface using sub-at...
The direct manipulation of individual atoms in materials using scanning probe microscopy has been a ...
We employ scanning probe microscopy to reveal atomic structures and nanoscale morphology of graphene...
Graphene is an ideal thin membrane substrate for creating molecule-scale devices. Here we demonstrat...
The use of atomically thin graphene for molecular sensing has attracted tremendous attention over th...
Recent advances in scanning transmission electron microscopy (STEM) instrumentation have made it pos...
Atomic design of a 2D-material such as graphene can be substantially influenced by etching, delibera...