Research paper
Experimental CharacterizationComputational AimdEach sample groups how it was prepared, characterized, and measured. Click a card to expand.
1 characterization2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
No measurements recorded
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Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
1 characterization2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
No measurements recorded
Related documents with shared materials, methods, properties, or citations.
Hyperbolic phonon-polariton electroluminescence in graphene-hBN van der Waals heterostructures
Impact of Monoatomic Vacancies in 2D Materials on the Performance of Magnetic Tunnel Junction Devices: Insights from Configurations and Interface Interactions
Quantum sensing with a spin ensemble in a van der Waals material
Quantum Hall Effect at 0.002 T
Single-photon detection enabled by negative differential conductivity in moiré superlattices
A Hybrid Jump-Diffusion Model for Coherent Optical Control of Quantum Emitters in hBN
Water induced bandgap engineering in nanoribbons of hexagonal boron nitride
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
1 characterization2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
No measurements recorded
Related documents with shared materials, methods, properties, or citations.
Hyperbolic phonon-polariton electroluminescence in graphene-hBN van der Waals heterostructures
Impact of Monoatomic Vacancies in 2D Materials on the Performance of Magnetic Tunnel Junction Devices: Insights from Configurations and Interface Interactions
Quantum sensing with a spin ensemble in a van der Waals material
Quantum Hall Effect at 0.002 T
Single-photon detection enabled by negative differential conductivity in moiré superlattices
A Hybrid Jump-Diffusion Model for Coherent Optical Control of Quantum Emitters in hBN
Water induced bandgap engineering in nanoribbons of hexagonal boron nitride
Each sample groups how it was prepared, characterized, and measured. Click a card to expand.
1 characterization2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
1 characterization1 property2 figures
No measurements recorded
Related documents with shared materials, methods, properties, or citations.
Hyperbolic phonon-polariton electroluminescence in graphene-hBN van der Waals heterostructures
Impact of Monoatomic Vacancies in 2D Materials on the Performance of Magnetic Tunnel Junction Devices: Insights from Configurations and Interface Interactions
Quantum sensing with a spin ensemble in a van der Waals material
Quantum Hall Effect at 0.002 T
Single-photon detection enabled by negative differential conductivity in moiré superlattices
A Hybrid Jump-Diffusion Model for Coherent Optical Control of Quantum Emitters in hBN
Water induced bandgap engineering in nanoribbons of hexagonal boron nitride