Research paper
Experimental CharacterizationEach sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 characterizations2 figures
No measurements recorded
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Gate- and Optically Controlled Nonlinear Optical Response in Graphene via Non-Perturbative Ultrafast Carrier Dynamics
METHOD AND SYSTEM FOR GRAPHENE FORMATION
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Resonant Raman scattering of surface phonon polaritons mediated by excitons in WSe2 films
A Method and System for Producing Graphene on a Copper Substrate by Modified Chemical Vapour Deposition (AP-CVD)
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 characterizations2 figures
No measurements recorded
Related documents with shared materials, methods, properties, or citations.
METHOD OF FORMING GRAPHENE
SUPERLUBRICATING GRAPHENE AND GRAPHENE OXIDE FILMS
METHOD AND SYSTEM FOR GROWTH OF GRAPHENE NANOSTRIPES BY PLASMA ENHANCED CHEMICAL VAPOR DEPOSITION
Gate- and Optically Controlled Nonlinear Optical Response in Graphene via Non-Perturbative Ultrafast Carrier Dynamics
METHOD AND SYSTEM FOR GRAPHENE FORMATION
TRANSPARENT SUBSTRATES COMPRISING THREE-DIMENSIONAL POROUS CONDUCTIVE GRAPHENE FILMS AND METHODS FOR MAKING THE SAME
Resonant Raman scattering of surface phonon polaritons mediated by excitons in WSe2 films
A Method and System for Producing Graphene on a Copper Substrate by Modified Chemical Vapour Deposition (AP-CVD)
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 characterizations2 figures
No measurements recorded
Related documents with shared materials, methods, properties, or citations.
METHOD OF FORMING GRAPHENE
SUPERLUBRICATING GRAPHENE AND GRAPHENE OXIDE FILMS
METHOD AND SYSTEM FOR GROWTH OF GRAPHENE NANOSTRIPES BY PLASMA ENHANCED CHEMICAL VAPOR DEPOSITION
Gate- and Optically Controlled Nonlinear Optical Response in Graphene via Non-Perturbative Ultrafast Carrier Dynamics
METHOD AND SYSTEM FOR GRAPHENE FORMATION
TRANSPARENT SUBSTRATES COMPRISING THREE-DIMENSIONAL POROUS CONDUCTIVE GRAPHENE FILMS AND METHODS FOR MAKING THE SAME
Resonant Raman scattering of surface phonon polaritons mediated by excitons in WSe2 films
A Method and System for Producing Graphene on a Copper Substrate by Modified Chemical Vapour Deposition (AP-CVD)
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 characterizations2 figures
No measurements recorded
Related documents with shared materials, methods, properties, or citations.
METHOD OF FORMING GRAPHENE
SUPERLUBRICATING GRAPHENE AND GRAPHENE OXIDE FILMS
METHOD AND SYSTEM FOR GROWTH OF GRAPHENE NANOSTRIPES BY PLASMA ENHANCED CHEMICAL VAPOR DEPOSITION
Gate- and Optically Controlled Nonlinear Optical Response in Graphene via Non-Perturbative Ultrafast Carrier Dynamics
METHOD AND SYSTEM FOR GRAPHENE FORMATION
TRANSPARENT SUBSTRATES COMPRISING THREE-DIMENSIONAL POROUS CONDUCTIVE GRAPHENE FILMS AND METHODS FOR MAKING THE SAME
Resonant Raman scattering of surface phonon polaritons mediated by excitons in WSe2 films
A Method and System for Producing Graphene on a Copper Substrate by Modified Chemical Vapour Deposition (AP-CVD)
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications