Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
hBN-encapsulated device containing single-layer graphene and two chiral twisted bilayer graphene regions of opposite twist sign, used for enantioselective fluorescence-quenching measurements of deposited helical bilayer nanographene molecules.
2 characterizations1 property1 figure
ExperimentalCStudied MaterialBNSubstrate / DielectricCStudied Materialhelical bilayer nanographeneStudied Material
Relaxed helical bilayer nanographene molecule on hBN used for TDDFT transition-energy calculation.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
hBN-encapsulated device containing single-layer graphene and two chiral twisted bilayer graphene regions of opposite twist sign, used for enantioselective fluorescence-quenching measurements of deposited helical bilayer nanographene molecules.
2 characterizations1 property1 figure
ExperimentalCStudied MaterialBNSubstrate / DielectricCStudied Materialhelical bilayer nanographeneStudied Material
Relaxed helical bilayer nanographene molecule on hBN used for TDDFT transition-energy calculation.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
hBN-encapsulated device containing single-layer graphene and two chiral twisted bilayer graphene regions of opposite twist sign, used for enantioselective fluorescence-quenching measurements of deposited helical bilayer nanographene molecules.
2 characterizations1 property1 figure
ExperimentalCStudied MaterialBNSubstrate / DielectricCStudied Materialhelical bilayer nanographeneStudied Material
Relaxed helical bilayer nanographene molecule on hBN used for TDDFT transition-energy calculation.
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
hBN-encapsulated device containing single-layer graphene and two chiral twisted bilayer graphene regions of opposite twist sign, used for enantioselective fluorescence-quenching measurements of deposited helical bilayer nanographene molecules.
2 characterizations1 property1 figure
ExperimentalCStudied MaterialBNSubstrate / DielectricCStudied Materialhelical bilayer nanographeneStudied Material
Relaxed helical bilayer nanographene molecule on hBN used for TDDFT transition-energy calculation.