A network of self-assembled polystyrene beads was employed as a lithographic mask during covalent functionalization reactions on graphitic surfaces to create nanocorrals for confined molecular self-assembly studies. The beads were initially assembled into hexagonal arrays at the air-liquid interface and then transferred to the substrate surface. Subsequent electrochemical grafting reactions involving aryl diazonium molecules created covalently bound molecular units that were localized in the void space between the nanospheres. Removal of the bead template exposed hexagonally arranged circular nanocorrals separated by regions of chemisorbed molecules. Small molecule self-assembly was then investigated inside the resultant nanocorrals using s...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
Self-assembly of an alkylated diacetylene derivative is spatially confined via in situ scanning tunn...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
A network of self-assembled polystyrene beads was employed as a lithographic mask during covalent fu...
A network of self-assembled polystyrene beads was employed as a lithographic mask during covalent fu...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
Controlled covalent functionalization of graphitic surfaces with molecular scale precision is crucia...
An approach for nanoscale covalent functionalization of graphite surfaces employing self-assembled m...
An approach for nanoscale covalent functionalization of graphite surfaces employing self-assembled m...
Highly oriented pyrolytic graphite (HOPG) can be covalently grafted with aryl radicals generated via...
We describe a fast and versatile method to functionalize high-quality graphene with organic molecule...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
The development of science and technology of advanced materials using nanoscale units can be conduct...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
Self-assembly of an alkylated diacetylene derivative is spatially confined via in situ scanning tunn...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
A network of self-assembled polystyrene beads was employed as a lithographic mask during covalent fu...
A network of self-assembled polystyrene beads was employed as a lithographic mask during covalent fu...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
We shine light on the covalent modification of graphite and graphene substrates using diazonium chem...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
Controlled covalent functionalization of graphitic surfaces with molecular scale precision is crucia...
An approach for nanoscale covalent functionalization of graphite surfaces employing self-assembled m...
An approach for nanoscale covalent functionalization of graphite surfaces employing self-assembled m...
Highly oriented pyrolytic graphite (HOPG) can be covalently grafted with aryl radicals generated via...
We describe a fast and versatile method to functionalize high-quality graphene with organic molecule...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
The development of science and technology of advanced materials using nanoscale units can be conduct...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
Self-assembly of an alkylated diacetylene derivative is spatially confined via in situ scanning tunn...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...