Folded graphene in which two layers are stacked with a twist angle between them has been predicted to exhibit unique electronic, thermal, and magnetic properties. We report the folding of a single crystal monolayer graphene film grown on a Cu(111) substrate by using a tailored substrate having a hydrophobic region and a hydrophilic region. Controlled film delamination from the hydrophilic region was used to prepare macroscopic folded graphene with good uniformity on the millimeter scale. This process was used to create many folded sheets each with a defined twist angle between the two sheets. By identifying the original lattice orientation of the monolayer graphene on Cu foil, or establishing the relation between the fold angle and twist an...
In the nanotechnology field, some existing materials and applications are harmful to the environment...
Crumpled graphene films are broadly used, for instance in electronics1, energy storage2, 3, composit...
Direct, tunable coupling between individually assembled graphene layers is a next step toward design...
Folded graphene in which two layers are stacked with a twist angle between them has been predicted t...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
A single-crystal graphene film grown on a Cu(111) foil by chemical vapor deposition (CVD) has ribbon...
The folding of paper, hide, and woven fabric has been used for millennia to achieve enhanced articul...
Fast-growth of single crystal monolayer graphene by CVD using methane and hydrogen has been achieved...
The electronic properties of bilayer graphene strongly depend on relative orientation of the two ato...
Fast-growth of single crystal monolayer graphene by CVD using methane and hydrogen has been achieved...
Graphene is a promising material for electronic and mechanical applications due to its excellent cha...
AbstractThe crystallinity of graphene flakes and their orientation with respect to the Cu(111) subst...
Graphene and other two-dimensional materials have unique physical and chemical properties of broad r...
A folding technique is reported to incorporate large-area monolayer graphene films in polymer compos...
The electronic properties of graphene can be efficiently altered upon interaction with the underlyin...
In the nanotechnology field, some existing materials and applications are harmful to the environment...
Crumpled graphene films are broadly used, for instance in electronics1, energy storage2, 3, composit...
Direct, tunable coupling between individually assembled graphene layers is a next step toward design...
Folded graphene in which two layers are stacked with a twist angle between them has been predicted t...
Chemical vapour deposition of carbon-containing precursors on metal substrates is currently the most...
A single-crystal graphene film grown on a Cu(111) foil by chemical vapor deposition (CVD) has ribbon...
The folding of paper, hide, and woven fabric has been used for millennia to achieve enhanced articul...
Fast-growth of single crystal monolayer graphene by CVD using methane and hydrogen has been achieved...
The electronic properties of bilayer graphene strongly depend on relative orientation of the two ato...
Fast-growth of single crystal monolayer graphene by CVD using methane and hydrogen has been achieved...
Graphene is a promising material for electronic and mechanical applications due to its excellent cha...
AbstractThe crystallinity of graphene flakes and their orientation with respect to the Cu(111) subst...
Graphene and other two-dimensional materials have unique physical and chemical properties of broad r...
A folding technique is reported to incorporate large-area monolayer graphene films in polymer compos...
The electronic properties of graphene can be efficiently altered upon interaction with the underlyin...
In the nanotechnology field, some existing materials and applications are harmful to the environment...
Crumpled graphene films are broadly used, for instance in electronics1, energy storage2, 3, composit...
Direct, tunable coupling between individually assembled graphene layers is a next step toward design...