Research paper
Experimental GrowthExperimental CharacterizationComputational DFTEach sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 preparations3 characterizations5 properties3 figures
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GRAPHENE FORMATION ON DIELECTRICS AND ELECTRONIC DEVICES FORMED THEREFROM
METHODS OF PREPARING GRAPHENE AND DEVICE INCLUDING GRAPHENE
MAGNETIC DEVICES AND MAGNETIC MEDIA WITH GRAPHENE OVERCOAT
SEMICONDUCTOR INTERCONNECT STRUCTURE HAVING A GRAPHENE-BASED BARRIER METAL LAYER
METHOD FOR PRODUCING CATALYTIC METAL LAYER AND METHOD FOR PRODUCING GRAPHENE MATERIAL
LIGHT EMITTING DIODE HAVING METAL NANOPARTICLE LAYERED GRAPHENE
GRAPHENE FORMING METHOD
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 preparations3 characterizations5 properties3 figures
Related documents with shared materials, methods, properties, or citations.
A depth resolved investigation of hydrogen uptake in carbon based nanostructures by soft-to-hard photoemission spectroscopy
A Wide Optical-Gap in Fully sp3-Like Hydrogenated Monolayer Graphene
GRAPHENE FORMATION ON DIELECTRICS AND ELECTRONIC DEVICES FORMED THEREFROM
METHODS OF PREPARING GRAPHENE AND DEVICE INCLUDING GRAPHENE
MAGNETIC DEVICES AND MAGNETIC MEDIA WITH GRAPHENE OVERCOAT
SEMICONDUCTOR INTERCONNECT STRUCTURE HAVING A GRAPHENE-BASED BARRIER METAL LAYER
METHOD FOR PRODUCING CATALYTIC METAL LAYER AND METHOD FOR PRODUCING GRAPHENE MATERIAL
LIGHT EMITTING DIODE HAVING METAL NANOPARTICLE LAYERED GRAPHENE
GRAPHENE FORMING METHOD
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 preparations3 characterizations5 properties3 figures
Related documents with shared materials, methods, properties, or citations.
A depth resolved investigation of hydrogen uptake in carbon based nanostructures by soft-to-hard photoemission spectroscopy
A Wide Optical-Gap in Fully sp3-Like Hydrogenated Monolayer Graphene
GRAPHENE FORMATION ON DIELECTRICS AND ELECTRONIC DEVICES FORMED THEREFROM
METHODS OF PREPARING GRAPHENE AND DEVICE INCLUDING GRAPHENE
MAGNETIC DEVICES AND MAGNETIC MEDIA WITH GRAPHENE OVERCOAT
SEMICONDUCTOR INTERCONNECT STRUCTURE HAVING A GRAPHENE-BASED BARRIER METAL LAYER
METHOD FOR PRODUCING CATALYTIC METAL LAYER AND METHOD FOR PRODUCING GRAPHENE MATERIAL
LIGHT EMITTING DIODE HAVING METAL NANOPARTICLE LAYERED GRAPHENE
GRAPHENE FORMING METHOD
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
5 preparations3 characterizations5 properties3 figures
Related documents with shared materials, methods, properties, or citations.
A depth resolved investigation of hydrogen uptake in carbon based nanostructures by soft-to-hard photoemission spectroscopy
A Wide Optical-Gap in Fully sp3-Like Hydrogenated Monolayer Graphene
GRAPHENE FORMATION ON DIELECTRICS AND ELECTRONIC DEVICES FORMED THEREFROM
METHODS OF PREPARING GRAPHENE AND DEVICE INCLUDING GRAPHENE
MAGNETIC DEVICES AND MAGNETIC MEDIA WITH GRAPHENE OVERCOAT
SEMICONDUCTOR INTERCONNECT STRUCTURE HAVING A GRAPHENE-BASED BARRIER METAL LAYER
METHOD FOR PRODUCING CATALYTIC METAL LAYER AND METHOD FOR PRODUCING GRAPHENE MATERIAL
LIGHT EMITTING DIODE HAVING METAL NANOPARTICLE LAYERED GRAPHENE
GRAPHENE FORMING METHOD