Research paper
Experimental GrowthExperimental CharacterizationEach sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 preparations6 characterizations18 properties3 figures
2 characterizations6 properties2 figures
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Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
Unidirectional domain growth of hexagonal boron nitride thin films
Tailoring Amorphous Boron Nitride for High-Performance 2D Electronics
Non-linear optics at twist interfaces in h-BN/SiC heterostructures
FABRICATION OF LARGE-AREA HEXAGONAL BORON NITRIDE THIN FILMS
Formation and protection of an Eu-Ir surface compound below hexagonal boron nitride
Encapsulation of the Graphene Nanoribbon Precursor 1,2,4-trichlorobenzene in Boron Nitride Nanotubes at Room Temperature
METHOD OF PREPARING GRAPHENE QUANTUM DOT, HARDMASK COMPOSITION INCLUDING THE GRAPHENE QUANTUM DOT OBTAINED BY THE METHOD, METHOD OF FORMING PATTERNS USING THE HARDMASK COMPOSITION, AND HARDMASK FORMED FROM THE HARDMASK COMPOSITION
High-Temperature-Resilient Hyperbolicity in a Mixed-Dimensional Superlattice
CHEMICAL SENSORS WITH NON-COVALENT SURFACE MODIFICATION OF GRAPHENE
Chiral two-dimensional MoS2 by molecular functionalization as ultra-sensitive detectors for circularly polarized light
Interfacial properties of MoS2 thin films grown on functional substrates
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 preparations6 characterizations18 properties3 figures
2 characterizations6 properties2 figures
Related documents with shared materials, methods, properties, or citations.
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
Unidirectional domain growth of hexagonal boron nitride thin films
Tailoring Amorphous Boron Nitride for High-Performance 2D Electronics
Non-linear optics at twist interfaces in h-BN/SiC heterostructures
FABRICATION OF LARGE-AREA HEXAGONAL BORON NITRIDE THIN FILMS
Formation and protection of an Eu-Ir surface compound below hexagonal boron nitride
Encapsulation of the Graphene Nanoribbon Precursor 1,2,4-trichlorobenzene in Boron Nitride Nanotubes at Room Temperature
METHOD OF PREPARING GRAPHENE QUANTUM DOT, HARDMASK COMPOSITION INCLUDING THE GRAPHENE QUANTUM DOT OBTAINED BY THE METHOD, METHOD OF FORMING PATTERNS USING THE HARDMASK COMPOSITION, AND HARDMASK FORMED FROM THE HARDMASK COMPOSITION
High-Temperature-Resilient Hyperbolicity in a Mixed-Dimensional Superlattice
CHEMICAL SENSORS WITH NON-COVALENT SURFACE MODIFICATION OF GRAPHENE
Chiral two-dimensional MoS2 by molecular functionalization as ultra-sensitive detectors for circularly polarized light
Interfacial properties of MoS2 thin films grown on functional substrates
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 preparations6 characterizations18 properties3 figures
2 characterizations6 properties2 figures
Related documents with shared materials, methods, properties, or citations.
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
Unidirectional domain growth of hexagonal boron nitride thin films
Tailoring Amorphous Boron Nitride for High-Performance 2D Electronics
Non-linear optics at twist interfaces in h-BN/SiC heterostructures
FABRICATION OF LARGE-AREA HEXAGONAL BORON NITRIDE THIN FILMS
Formation and protection of an Eu-Ir surface compound below hexagonal boron nitride
Encapsulation of the Graphene Nanoribbon Precursor 1,2,4-trichlorobenzene in Boron Nitride Nanotubes at Room Temperature
METHOD OF PREPARING GRAPHENE QUANTUM DOT, HARDMASK COMPOSITION INCLUDING THE GRAPHENE QUANTUM DOT OBTAINED BY THE METHOD, METHOD OF FORMING PATTERNS USING THE HARDMASK COMPOSITION, AND HARDMASK FORMED FROM THE HARDMASK COMPOSITION
High-Temperature-Resilient Hyperbolicity in a Mixed-Dimensional Superlattice
CHEMICAL SENSORS WITH NON-COVALENT SURFACE MODIFICATION OF GRAPHENE
Chiral two-dimensional MoS2 by molecular functionalization as ultra-sensitive detectors for circularly polarized light
Interfacial properties of MoS2 thin films grown on functional substrates
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
2 preparations6 characterizations18 properties3 figures
2 characterizations6 properties2 figures
Related documents with shared materials, methods, properties, or citations.
Unravelling the room temperature growth of two-dimensional h-BN nanosheets for multifunctional applications
Unidirectional domain growth of hexagonal boron nitride thin films
Tailoring Amorphous Boron Nitride for High-Performance 2D Electronics
Non-linear optics at twist interfaces in h-BN/SiC heterostructures
FABRICATION OF LARGE-AREA HEXAGONAL BORON NITRIDE THIN FILMS
Formation and protection of an Eu-Ir surface compound below hexagonal boron nitride
Encapsulation of the Graphene Nanoribbon Precursor 1,2,4-trichlorobenzene in Boron Nitride Nanotubes at Room Temperature
METHOD OF PREPARING GRAPHENE QUANTUM DOT, HARDMASK COMPOSITION INCLUDING THE GRAPHENE QUANTUM DOT OBTAINED BY THE METHOD, METHOD OF FORMING PATTERNS USING THE HARDMASK COMPOSITION, AND HARDMASK FORMED FROM THE HARDMASK COMPOSITION
High-Temperature-Resilient Hyperbolicity in a Mixed-Dimensional Superlattice
CHEMICAL SENSORS WITH NON-COVALENT SURFACE MODIFICATION OF GRAPHENE
Chiral two-dimensional MoS2 by molecular functionalization as ultra-sensitive detectors for circularly polarized light
Interfacial properties of MoS2 thin films grown on functional substrates