Black phosphorus (BP) is a highly anisotropic allotrope of phosphorus with great promise for fast functional electronics and optoelectronics. We demonstrate the controlled structural modification of few-layer BP along arbitrary crystal directions with sub-nanometer precision for the formation of few-nanometer-wide armchair and zigzag BP nanoribbons. Nanoribbons are fabricated, along with nanopores and nanogaps, using a combination of mechanical–liquid exfoliation and <i>in situ</i> transmission electron microscopy (TEM) and scanning TEM nanosculpting. We predict that the few-nanometer-wide BP nanoribbons realized experimentally possess clear one-dimensional quantum confinement, even when the systems are made up of a few layers. The demonstr...
Quantum confinement of two-dimensional excitons in van der Waals materials via electrostatic trappin...
The optoelectronic signatures of free-standing few-atomic-layer black phosphorus nanoflakes are anal...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
Black phosphorus (BP) is a highly anisotropic allotrope of phosphorus with great promise for fast fu...
Phosphorene is a mono-elemental, two-dimensional (2D) substance with outstanding, highly directional...
Phosphorene is a mono-elemental, two-dimensional (2D) substance with outstanding, highly directional...
Black phosphorus (BP) is an emerging two-dimensional (2D) material with a natural bandgap, which has...
Owing to its high charge-carrier mobility, tunable direct-bandgap and unique in-plane anisotropic st...
Atomically thin black phosphorus (BP) has attracted considerable interest due to its unique properti...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
Black phosphorus (BP) has recently emerged as an alternative 2D semiconductor owing to its fascinati...
Elemental phosphorus nanostructures are notorious for a large number of allotropes, which limits the...
The shaping of matter into desired nanometric structures with on-demand functionalities can enhance ...
This paper reports the successful fabrication of large size few-layer black phosphorus, and nano-pa...
Black phosphorene (BP) has shown anisotropic, electronic, mechanical, and thermal properties for var...
Quantum confinement of two-dimensional excitons in van der Waals materials via electrostatic trappin...
The optoelectronic signatures of free-standing few-atomic-layer black phosphorus nanoflakes are anal...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...
Black phosphorus (BP) is a highly anisotropic allotrope of phosphorus with great promise for fast fu...
Phosphorene is a mono-elemental, two-dimensional (2D) substance with outstanding, highly directional...
Phosphorene is a mono-elemental, two-dimensional (2D) substance with outstanding, highly directional...
Black phosphorus (BP) is an emerging two-dimensional (2D) material with a natural bandgap, which has...
Owing to its high charge-carrier mobility, tunable direct-bandgap and unique in-plane anisotropic st...
Atomically thin black phosphorus (BP) has attracted considerable interest due to its unique properti...
In this work, first-principles calculations based on Density Functional Theory (DFT) were employed i...
Black phosphorus (BP) has recently emerged as an alternative 2D semiconductor owing to its fascinati...
Elemental phosphorus nanostructures are notorious for a large number of allotropes, which limits the...
The shaping of matter into desired nanometric structures with on-demand functionalities can enhance ...
This paper reports the successful fabrication of large size few-layer black phosphorus, and nano-pa...
Black phosphorene (BP) has shown anisotropic, electronic, mechanical, and thermal properties for var...
Quantum confinement of two-dimensional excitons in van der Waals materials via electrostatic trappin...
The optoelectronic signatures of free-standing few-atomic-layer black phosphorus nanoflakes are anal...
Recently, a new semiconducting 2D material, black phosphorus, has piqued the interest of research gr...