We used AFM to investigate the interaction of polyelectrolytes such as ssDNA and dsDNA molecules with graphene as a substrate. Graphene is an appropriate substrate due to its planarity, relatively large surfaces that are detectable via an optical microscope, and straightforward identification of the number of layers. We observe that in the absence of the screening ions deposited ssDNA will bind only to the graphene and not to the SiO2 substrate, confirming that the binding energy is mainly due to the π-π stacking interaction. Furthermore, deposited ssDNA will map the graphene underlying structure. We also quantify the π-π stacking interaction by correlating the amount of deposited DNA with the graphene layer thickness. Our findings agree wi...
A detailed understanding of the interactions between biomolecules and nanomaterial surfaces is criti...
Graphene is the material elected to study molecules and monolayers at the molecular scale due to its...
Investigation into the interactions between biomolecules DNA/RNA and carbon nanomaterials is very im...
We used AFM to investigate the interaction of polyelectrolytes such as ssDNA and dsDNA molecules wit...
The discovery of DNA origami nanotechnology has opened new opportunities in this field due to the ve...
Although there is a long history of the study of the interaction of DNA with carbon surfaces, limite...
Graphene and carbon nanotubes are extreme mechanical and electronic materials which have been the su...
Graphene and carbon nanotubes are extreme mechanical and electronic materials which have been the su...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
Graphene and its functionalised derivatives are transforming the development of biosensors that are ...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...
Nanomanipulation of single DNA molecules has great potential in fundamental genetic research and cli...
The emergence of graphene in recent years provides exciting avenues for achieving fast, reliable DNA...
Graphene, a purely two-dimensional sheet of carbon atoms, as an attractive substrate for plasmonic n...
A detailed understanding of the interactions between biomolecules and nanomaterial surfaces is criti...
Graphene is the material elected to study molecules and monolayers at the molecular scale due to its...
Investigation into the interactions between biomolecules DNA/RNA and carbon nanomaterials is very im...
We used AFM to investigate the interaction of polyelectrolytes such as ssDNA and dsDNA molecules wit...
The discovery of DNA origami nanotechnology has opened new opportunities in this field due to the ve...
Although there is a long history of the study of the interaction of DNA with carbon surfaces, limite...
Graphene and carbon nanotubes are extreme mechanical and electronic materials which have been the su...
Graphene and carbon nanotubes are extreme mechanical and electronic materials which have been the su...
We investigate by means of molecular dynamics simulations stretch-induced stepwise translocation of ...
Graphene and its functionalised derivatives are transforming the development of biosensors that are ...
There is immense demand for complex nanoarchitectures based on graphene nanostructures in the fields...
© 2018 Dr. Nikolai DontschukThe field of genetics has grown rapidly since the isolation of the doubl...
Nanomanipulation of single DNA molecules has great potential in fundamental genetic research and cli...
The emergence of graphene in recent years provides exciting avenues for achieving fast, reliable DNA...
Graphene, a purely two-dimensional sheet of carbon atoms, as an attractive substrate for plasmonic n...
A detailed understanding of the interactions between biomolecules and nanomaterial surfaces is criti...
Graphene is the material elected to study molecules and monolayers at the molecular scale due to its...
Investigation into the interactions between biomolecules DNA/RNA and carbon nanomaterials is very im...